2021-08-31 , Volume 7 Issue 8

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  • Editorial
    Active Support of Power System to Energy Transition
    [Author(id=1166111446775030427, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892360064721704, orderNo=0, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111446909248157, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892360064721704, authorId=1166111446775030427, language=EN, stringName=Yusheng Xue, firstName=Yusheng, middleName=null, lastName=Xue, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Honorary President of the State Grid Electric Power Research Institute (NARI Group Corporation), bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111447009911454, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892360064721704, authorId=1166111446775030427, language=CN, stringName=薛禹胜, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Honorary President of the State Grid Electric Power Research Institute (NARI Group Corporation), bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)] Yusheng Xue

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • News & Highlights
  • Perovskite Pushes Solar Cells to Record Efficiency
    [Author(id=1166111813885682687, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892394030195519, orderNo=0, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111813998927874, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892394030195519, authorId=1166111813885682687, language=EN, stringName=Sean O'Neill, firstName=Sean, middleName=null, lastName=O'Neill, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Senior Technology Writer, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111814087008258, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892394030195519, authorId=1166111813885682687, language=CN, stringName=Sean O'Neill, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Senior Technology Writer, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)] Sean O'Neill

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Better Battery Management Boosts Electric Vehicle Prospects
    [Author(id=1166111812895826927, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892387768099640, orderNo=0, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111813009073139, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892387768099640, authorId=1166111812895826927, language=EN, stringName=Peter Weiss, firstName=Peter, middleName=null, lastName=Weiss, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Senior Technology Writer, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111813101347830, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892387768099640, authorId=1166111812895826927, language=CN, stringName=Peter Weiss, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Senior Technology Writer, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)] Peter Weiss

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Corporate Climate Pledges Pile Up—Will It Matter?
    [Author(id=1166111804540773223, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892381145293616, orderNo=0, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111804679185259, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892381145293616, authorId=1166111804540773223, language=EN, stringName=Ula Chrobak, firstName=Ula, middleName=null, lastName=Chrobak, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Senior Technology Writer, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111804784042862, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892381145293616, authorId=1166111804540773223, language=CN, stringName=Ula Chrobak, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Senior Technology Writer, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)] Ula Chrobak

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Views & Comments
  • Future Research Trend for Improving Large Reflector Antenna Service Performance
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journalId=1155139928190095384, articleId=1159892375155827503, authorId=1166111810135974864, language=EN, stringName=Yang Wu, firstName=Yang, middleName=null, lastName=Wu, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=e, address=e China Electronics Technology Group Corporation No. 54 Research Institute, Shijiazhuang 050081, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111810370855893, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892375155827503, authorId=1166111810135974864, language=CN, stringName=伍洋, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=e, address=e China Electronics Technology Group Corporation No. 54 Research Institute, Shijiazhuang 050081, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)] Peiyuan Lian , Congsi Wang , Song Xue , Yan Wang , Yuefei Yan , Qian Xu , Baoyan Duan , Na Wang , Yuhu Duan , Yang Wu

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Analysis of Potential Disruptive Technologies in the Electronics and Information Field towards the Intelligent Society
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    Yueguang Lyu , Yaxin Zhang , Yang Liu , Weifang Chen , Xilin Zhang , Wenyuan Xu , Changju Wu , Lan Wang , Hongxin Zeng , Xuan Sheng , Rui Yang , Zenghui Wang , Kun Kuang , Wu Fei

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

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  • Perspective
    Addressing Frequency Control Challenges in Future Low-Inertia Power Systems: A Great Britain Perspective
    [Author(id=1166111958673056265, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, orderNo=0, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111958819856909, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111958673056265, language=EN, stringName=Qiteng Hong, firstName=Qiteng, middleName=null, lastName=Hong, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111958920520208, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111958673056265, language=CN, stringName=洪启腾, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111959025377811, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, orderNo=1, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111959163789848, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111959025377811, language=EN, stringName=Md Asif Uddin Khan, firstName=Md Asif Uddin, middleName=null, lastName=Khan, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111959268647450, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111959025377811, language=CN, stringName=Md Asif Uddin Khan, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111959369310751, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, orderNo=2, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111959511917090, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111959369310751, language=EN, stringName=Callum Henderson, firstName=Callum, middleName=null, lastName=Henderson, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111959612580387, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111959369310751, language=CN, stringName=Callum Henderson, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111959717437990, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, orderNo=3, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111959855850025, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111959717437990, language=EN, stringName=Agustí Egea-Àlvarez, firstName=Agustí, middleName=null, lastName=Egea-Àlvarez, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111959956513323, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111959717437990, language=CN, stringName=Agustí Egea-Àlvarez, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111960057176622, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, orderNo=4, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111960203977265, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111960057176622, language=EN, stringName=Dimitrios Tzelepis, firstName=Dimitrios, middleName=null, lastName=Tzelepis, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111960304640564, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111960057176622, language=CN, stringName=Dimitrios Tzelepis, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111960409498166, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, orderNo=5, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111960552104505, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111960409498166, language=EN, stringName=Campbell Booth, firstName=Campbell, middleName=null, lastName=Booth, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111960656962107, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893381419688127, authorId=1166111960409498166, language=CN, stringName=Campbell Booth, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1XW, UK, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)] Qiteng Hong , Md Asif Uddin Khan , Callum Henderson , Agustí Egea-Àlvarez , Dimitrios Tzelepis , Campbell Booth

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Article
    Research on DC Protection Strategy in Multi-Terminal Hybrid HVDC System
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    c College of Energy and Electrical Engineering, Hohai University, Nanjing 210098, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111637116739905, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, orderNo=1, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111637229986115, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, authorId=1166111637116739905, language=EN, stringName=Jiawei He, firstName=Jiawei, middleName=null, lastName=He, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=b, address=b Key Laboratory of Smart Grid of Ministry of Education, Tianjin University, Tianjin 300072, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111637313872196, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, authorId=1166111637116739905, language=CN, stringName=何佳伟, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=b, address=b Key Laboratory of Smart Grid of Ministry of Education, Tianjin University, Tianjin 300072, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111637401952582, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, orderNo=2, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111637511004488, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, authorId=1166111637401952582, language=EN, stringName=Bin Li, firstName=Bin, middleName=null, lastName=Li, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=b, address=b Key Laboratory of Smart Grid of Ministry of Education, Tianjin University, Tianjin 300072, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111637599084873, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, authorId=1166111637401952582, language=CN, stringName=李斌, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=b, address=b Key Laboratory of Smart Grid of Ministry of Education, Tianjin University, Tianjin 300072, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111637682970955, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, orderNo=3, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111637821382990, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, authorId=1166111637682970955, language=EN, stringName=Tonghua Wu, firstName=Tonghua, middleName=null, lastName=Wu, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, c, address=a State Key Laboratory of Smart Grid Protection and Control, Nari Group Corporation, Nanjing 211106, China
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    c College of Energy and Electrical Engineering, Hohai University, Nanjing 210098, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111637993349457, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, orderNo=4, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111638110789971, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, authorId=1166111637993349457, language=EN, stringName=Wei Dai, firstName=Wei, middleName=null, lastName=Dai, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a State Key Laboratory of Smart Grid Protection and Control, Nari Group Corporation, Nanjing 211106, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111638194676052, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, authorId=1166111637993349457, language=CN, stringName=戴魏, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a State Key Laboratory of Smart Grid Protection and Control, Nari Group Corporation, Nanjing 211106, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111638282756438, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, orderNo=5, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111638396002648, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, authorId=1166111638282756438, language=EN, stringName=Ye Li, firstName=Ye, middleName=null, lastName=Li, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=b, address=b Key Laboratory of Smart Grid of Ministry of Education, Tianjin University, Tianjin 300072, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111638488277337, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890955593638431, authorId=1166111638282756438, language=CN, stringName=李晔, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=b, address=b Key Laboratory of Smart Grid of Ministry of Education, Tianjin University, Tianjin 300072, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)]
    Yuping Zheng , Jiawei He , Bin Li , Tonghua Wu , Wei Dai , Ye Li

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Article
    Optimal Operation of Integrated Heat and Electricity Systems: A Tightening McCormick Approach
    [Author(id=1162121423672107100, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, orderNo=0, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1162121423839879262, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, authorId=1162121423672107100, language=EN, stringName=Lirong Deng, firstName=Lirong, middleName=null, lastName=Deng, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a Tsinghua-Berkeley Shenzhen Institute, Tsinghua University, Shenzhen 518055, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1162121423965708384, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, orderNo=1, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1162121424171229283, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, authorId=1162121423965708384, language=EN, stringName=Hongbin Sun, firstName=Hongbin, middleName=null, lastName=Sun, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, b, address=a Tsinghua-Berkeley Shenzhen Institute, Tsinghua University, Shenzhen 518055, China
    b State Key Laboratory of Power Systems, Department of Electrical Engineering, Tsinghua University, Beijing 100084, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1162121424301252711, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, orderNo=2, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1162121424502579306, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, authorId=1162121424301252711, language=EN, stringName=Baoju Li, firstName=Baoju, middleName=null, lastName=Li, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=c, d, address=c State Grid Jilin Electric Power Supply Co. Ltd., Changchun 130000, China
    d Harbin Institute of Technology, Harbin 150006, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1162121424628408428, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, orderNo=3, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1162121424796180590, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, authorId=1162121424628408428, language=EN, stringName=Yong Sun, firstName=Yong, middleName=null, lastName=Sun, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=c, address=c State Grid Jilin Electric Power Supply Co. Ltd., Changchun 130000, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1162121424922009712, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, orderNo=4, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1162121425089781874, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, authorId=1162121424922009712, language=EN, stringName=Tianshu Yang, firstName=Tianshu, middleName=null, lastName=Yang, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a Tsinghua-Berkeley Shenzhen Institute, Tsinghua University, Shenzhen 518055, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1162121425215610996, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, orderNo=5, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1162121425383383158, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892698578608797, authorId=1162121425215610996, language=EN, stringName=Xuan Zhang, firstName=Xuan, middleName=null, lastName=Zhang, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a Tsinghua-Berkeley Shenzhen Institute, Tsinghua University, Shenzhen 518055, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)]
    Lirong Deng , Hongbin Sun , Baoju Li , Yong Sun , Tianshu Yang , Xuan Zhang

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Article
    Programmable Adaptive Security Scanning for Networked Microgrids
    [Author(id=1166112215767114415, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, orderNo=0, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166112215905526449, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, authorId=1166112215767114415, language=EN, stringName=Zimin Jiang, firstName=Zimin, middleName=null, lastName=Jiang, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a Department of Electrical and Computer Engineering, Stony Brook University, Stony Brook, NY 11794, USA, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166112216010384050, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, authorId=1166112215767114415, language=CN, stringName=姜自民, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a Department of Electrical and Computer Engineering, Stony Brook University, Stony Brook, NY 11794, USA, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166112216111047348, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, orderNo=1, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166112216249459382, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, authorId=1166112216111047348, language=EN, stringName=Zefan Tang, firstName=Zefan, middleName=null, lastName=Tang, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a Department of Electrical and Computer Engineering, Stony Brook University, Stony Brook, NY 11794, USA, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166112216354316983, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, authorId=1166112216111047348, language=CN, stringName=唐泽帆, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a Department of Electrical and Computer Engineering, Stony Brook University, Stony Brook, NY 11794, USA, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166112216454980281, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, orderNo=2, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166112216597586619, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, authorId=1166112216454980281, language=EN, stringName=Peng Zhang, firstName=Peng, middleName=null, lastName=Zhang, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a Department of Electrical and Computer Engineering, Stony Brook University, Stony Brook, NY 11794, USA, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166112216698249916, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, authorId=1166112216454980281, language=CN, stringName=张鹏, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a Department of Electrical and Computer Engineering, Stony Brook University, Stony Brook, NY 11794, USA, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166112216798913214, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, orderNo=3, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166112216941519552, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, authorId=1166112216798913214, language=EN, stringName=Yanyuan Qin, firstName=Yanyuan, middleName=null, lastName=Qin, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=b, address=b Department of Computer Science and Engineering, University of Connecticut, Storrs, CT 06269, USA, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166112217046377153, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893912368242944, authorId=1166112216798913214, language=CN, stringName=秦彦源, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=b, address=b Department of Computer Science and Engineering, University of Connecticut, Storrs, CT 06269, USA, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)] Zimin Jiang , Zefan Tang , Peng Zhang , Yanyuan Qin

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Article
    Flexibility Prediction of Aggregated Electric Vehicles and Domestic Hot Water Systems in Smart Grids
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authorId=1166111739428397684, language=EN, stringName=Huayanran Zhou, firstName=Huayanran, middleName=null, lastName=Zhou, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources (North China Electric Power University), Beijing 102206, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111739629724279, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892642362352279, authorId=1166111739428397684, language=CN, stringName=周华嫣然, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources (North China Electric Power University), Beijing 102206, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111739717804665, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892642362352279, orderNo=2, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111739835245179, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892642362352279, authorId=1166111739717804665, language=EN, stringName=Yihong Zhou, firstName=Yihong, middleName=null, lastName=Zhou, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources (North China Electric Power University), Beijing 102206, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), 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tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892642362352279, authorId=1166111740011405950, language=EN, stringName=Haijing Zhang, firstName=Haijing, middleName=null, lastName=Zhang, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources (North China Electric Power University), Beijing 102206, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111740208538241, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892642362352279, authorId=1166111740011405950, language=CN, stringName=张海婧, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources (North China Electric Power University), Beijing 102206, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111740296618627, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892642362352279, orderNo=4, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111740418253445, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892642362352279, authorId=1166111740296618627, language=EN, stringName=Lars Nordströmd, firstName=Lars, middleName=null, lastName=Nordströmd, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=b, address=b Division of Electric Power and Energy Systems, School of Electrical Engineering and Computer Science, KTH Royal Institute of Technology, Stockholm 10044, Sweden, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111740506333830, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892642362352279, authorId=1166111740296618627, language=CN, stringName=Lars Nordströmd, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=b, address=b Division of Electric Power and Energy Systems, School of Electrical Engineering and Computer Science, KTH Royal Institute of Technology, Stockholm 10044, Sweden, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166111740590219912, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892642362352279, orderNo=5, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166111740707660426, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892642362352279, authorId=1166111740590219912, language=EN, stringName=Guangya Yang, firstName=Guangya, middleName=null, lastName=Yang, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=c, address=c Center for Electric Power and Energy Department of Electrical Engineering, Technical University of Denmark, Kgs Lyngby 2800, Denmark, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111740791546507, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159892642362352279, authorId=1166111740590219912, language=CN, stringName=杨光亚, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=c, address=c Center for Electric Power and Energy Department of Electrical Engineering, Technical University of Denmark, Kgs Lyngby 2800, Denmark, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)] Junjie Hu , Huayanran Zhou , Yihong Zhou , Haijing Zhang , Lars Nordströmd , Guangya Yang

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Review
    An Overview of Metal–Organic Frameworks for Green Chemical Engineering
    [Author(id=1166112025328934927, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893461593809155, orderNo=0, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166112025463152657, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893461593809155, authorId=1166112025328934927, language=EN, stringName=Xiang-Jing Kong, firstName=Xiang-Jing, middleName=null, lastName=Kong, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Beijing Key Laboratory for Green Catalysis and Separation & Department of Environmental Chemical Engineering, Beijing University of Technology, Beijing 100124, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166112025580593170, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893461593809155, authorId=1166112025328934927, language=CN, stringName=孔祥婧, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Beijing Key Laboratory for Green Catalysis and Separation & Department of Environmental Chemical Engineering, Beijing University of Technology, Beijing 100124, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166112025685450772, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893461593809155, orderNo=1, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166112025819668502, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893461593809155, authorId=1166112025685450772, language=EN, stringName=Jian-Rong Li, firstName=Jian-Rong, middleName=null, lastName=Li, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Beijing Key Laboratory for Green Catalysis and Separation & Department of Environmental Chemical Engineering, Beijing University of Technology, Beijing 100124, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166112025928720407, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893461593809155, authorId=1166112025685450772, language=CN, stringName=李建荣, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=null, address= Beijing Key Laboratory for Green Catalysis and Separation & Department of Environmental Chemical Engineering, Beijing University of Technology, Beijing 100124, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)] Xiang-Jing Kong , Jian-Rong Li

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Article
    Atomic Force Microscopy Measurement in the Lignosulfonate/Inorganic Silica System: From Dispersion Mechanism Study to Product Design
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firstName=Yong, middleName=null, lastName=Qian, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510641, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166112364820095082, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893496716911024, authorId=1166112364400664679, language=CN, stringName=钱勇, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510641, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166112365210165356, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893496716911024, orderNo=2, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166112365352771694, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893496716911024, authorId=1166112365210165356, language=EN, stringName=Yijie Zhou, firstName=Yijie, middleName=null, lastName=Zhou, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510641, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166112365453434991, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893496716911024, authorId=1166112365210165356, language=CN, stringName=周义杰, firstName=null, 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nameInitials=null, affiliation=null, department=null, xref=a, address=a School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510641, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166112365881254004, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893496716911024, authorId=1166112365554098289, language=CN, stringName=杨东杰, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, address=a School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510641, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166112366187438198, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893496716911024, orderNo=4, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, correspondingAuthor=0, authorType=1, ext={EN=AuthorExt(id=1166112366380376185, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893496716911024, authorId=1166112366187438198, language=EN, stringName=Xueqing Qiu, firstName=Xueqing, middleName=null, lastName=Qiu, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, b, address=a School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510641, China
    b State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou 510640, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166112366527176826, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893496716911024, authorId=1166112366187438198, language=CN, stringName=邱学青, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=a, b, address=a School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510641, China
    b State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou 510640, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)]
    Jingyu Wang , Yong Qian , Yijie Zhou , Dongjie Yang , Xueqing Qiu

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Article
    Engineered Biomimetic Platelet Membrane-Coated Nanoparticles Block Staphylococcus aureus Cytotoxicity and Protect Against Lethal Systemic Infection
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    f Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California San Diego, La Jolla, CA 92093, USA, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166111504547373169, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159890673992261772, authorId=1166111504320880749, language=CN, stringName=Victor Nizet, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=c, f, address=c Division of Host–Microbe Systems and Therapeutics, Department of Pediatrics, University of California San Diego, La Jolla, CA 92093, USA
    f Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California San Diego, La Jolla, CA 92093, USA, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null)]
    Jwa-Kyung Kim , Satoshi Uchiyama , Hua Gong , Alexandra Stream , Liangfang Zhang , Victor Nizet

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Article
    Selective Laser Melting under Variable Ambient Pressure: A Mesoscopic Model and Transport Phenomena
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Ya. Belenkiy , I. Yu. Letyagin , K.P. Karunakaran , Shengyong Pang

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Laboratory of Ministry of Education, Shantou University, Shantou 515063, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null), CN=AuthorExt(id=1166112108535538092, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893610806174608, authorId=1166112108103524777, language=CN, stringName=彭雄斌, firstName=null, middleName=null, lastName=null, prefix=null, suffix=null, authorComment=null, nameInitials=null, affiliation=null, department=null, xref=b, address=b Intelligent Manufacturing Key Laboratory of Ministry of Education, Shantou University, Shantou 515063, China, bio=null, bioImg=null, bioContent=null, aboutCorrespAuthor=null)}, companyList=null), Author(id=1166112108640395694, tenantId=1045748351789510663, journalId=1155139928190095384, articleId=1159893610806174608, orderNo=4, firstName=null, middleName=null, lastName=null, nameCn=null, orcid=null, stid=null, country=null, authorPic=null, dead=0, email=null, emailSecond=null, emailThird=null, 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    Siqi Chen , Nengsheng Bao , Akhil Garg , Xiongbin Peng , Liang Gao

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Review
    Advances and Strategies for Controlling the Quality and Safety of Postharvest Fruit
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    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.

  • Article
    Influence of Human Activities on Wintertime Haze-Related Meteorological Conditions over the Jing–Jin–Ji Region
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    Ying Xu , Yanju Liu , Zhenyu Han , Botao Zhou , Yihui Ding , Jie Wu , Tongfei Tian , Rouke Li , Jing Wang

    Nowadays, there has been a growing trend in the field of high-energy physics (HEP), in both its experimental and phenomenological studies, to incorporate machine learning (ML) and its specialized branch, deep learning (DL). This review paper provides a thorough illustration of these applications using different ML and DL approaches. The first part of the paper examines the basics of various particle physics types and establishes guidelines for assessing particle physics alongside the available learning models. Next, a detailed classification is provided for representing Jets that are reconstructed in high-energy collisions, mainly in proton-proton collisions at well-defined beam energies. This section covers various datasets, preprocessing techniques, and feature extraction and selection methods. The presented techniques can be applied to future hadron−hadron colliders (HHC), such as the high-luminosity LHC (HL-LHC) and the future circular collider−hadron−hadron (FCC-hh). The authors then explore several AI techniques analyses designed specifically for both image and point-cloud (PC) data in HEP. Additionally, a closer look is taken at the classification associated with Jet tagging in hadron collisions. In this review, various state-of-the-art (SOTA) techniques in ML and DL are examined, with a focus on their implications for HEP demands. More precisely, this discussion addresses various applications in extensive detail, such as Jet tagging, Jet tracking, and particle classification. The review concludes with an analysis of the current state of HEP using DL methodologies. It highlights the challenges and potential areas for future research, which are illustrated for each application.