Journal Home Online First Current Issue Archive For Authors Journal Information 中文版

Strategic Study of CAE >> 2013, Volume 15, Issue 5

Internet of things for military engineering: Conceptual model, supporting technologies and domain applications

School of National Defense Engineering, PLA University of Science and Technology, Nanjing 210007, China

Received: 2013-03-19 Available online: 2013-05-13 13:05:34.000

Next Previous

Abstract

With the aim to promote the amalgamation between military engineering and command systems or weapon platforms, this paper introduces the ideas and technologies of internet of things (IoT) into the research area of military engineering, proposes the research concept: IoT of military engineering (MEIoT). In the paper, the basic concept of MEIoT is defined, and the conceptual model of it is also established. On the basis of discussing the technology challenges of MEIoT, this paper presents several research advances and fruits of the authors on the military-engineering-sensing technologies, network transportation technologies in special spaces of military engineering, the data mining and managing technologies for multi-mode data in military engineering, and software paradigm of MEIoT. Finally, an example of MEIoT applied in naval ports is provided. The research of MEIoT will be of great significance to enhance the integrated supporting and protective ability of military engineering.

Figures

图1

图2

图3

图4

图5

图6

图7

图8

图9

图10

图11

图12

图13

References

[ 1 ] 解放军报. 揭秘外军地下基地:深达千米可抗百万吨核弹[EB/ OL]. [2013.03.01]. http://mil.huanqiu.com/world/2012-06.

[ 2 ] 李决龙,邢建春. 国防工程智能化理论与技术[M]. 北京:国防工 程出版社,2007.

[ 3 ] 李决龙,邢建春. 国防工程智能信息化概论[M].北京:电子工业 出版社,2010.

[ 4 ] 岳万英,周培根,霍恩俊,等. 军事工程百科辞典[M]. 北京:解 放军出版社,2003.

[ 5 ] International Telecommunication Union. ITU Internet reports 2005:The internet of things [EB/OL]. [2013-03-01]. http://www. itu.int/internetofthings/. link1

[ 6 ] Commission of the European communities. Internet of Things in 2020:Roadmap for the future [R]. Brussels:EPoSS,2010.

[ 7 ] 林 闯.《物联网关键理论与技术》专辑序言[J]. 计算机学报, 2011,34(5):761-762.

[ 8 ] 刘云浩. 物联网导论[M]. 北京:科学出版社,2010.

[ 9 ] 温家宝. 2010 年政府工作报告[EB/OL]. [2013-02-28]. http:// www.gov.cn/2010lh/content/.

[10] 谢立强,何 灿. 混凝土内钢筋锈蚀检测技术的研究进展[C]// 邢建春,王 平,李决龙,等编. 第三届全军国防工程智能化 技术研讨会论文集. 北京:国防工业出版社,2012:381-388.

[11] 李决龙,王晓波,邢建春. 临界氯离子浓度对混凝土结构健康 的影响分析[C]//邢建春,王 平,李决龙,等编. 第三届全军国 防工程智能化技术研讨会论文集. 北京:国防工业出版社, 2012:376-380.

[12] Li Juelong,Du Xiaofei,Xing Jianchun,et al. Localizationbased adaptive routing protocol for underwater acoustic sensor network[C]// The International Conference on Automatic Control and Artificial Intelligence. Xiamen,2012:1200-1204.

[13] Li Juelong,Du Xiaofei,Xing Jianchun,et al. A self-localization algorithm for wireless sensor networks [C]// The 24th Chinese Control and Decision Conference. Taiyuan,2012:3853- 3859.

[14] 刘厚仁,邢建春,杨启亮. 防护工程战时保障辅助决策系统设 计与实现[J]. 防护工程,2011,33(3):45-49. link1

[15] 孙宇翔. 军港勤务保障辅助决策关键技术研究[D]. 南京:解放 军理工大学,2011.

[16] 李决龙,张淼淼,邢建春,等. 面向SOA的国防工程智能信息 化系统架构[C]//邢建春,王 平,李决龙,等编. 第三届全军 国防工程智能化技术研讨会论文集. 北京:国防工业出版社, 2012:1-7.

[17] 王洪达,邢建春,宋 巍,等. 基于程序依赖图的静态BPEL 程序切片技术[J]. 计算机应用,2012,32(8):2338-2341. link1

[18] Wang Hongda,Song Wei,Xing Jianchun,et al. Global-timeoffsets based checkpoint selection for dynamic verification of fixed-time constraints in grid workflows[C]// Randall Bilof,ed. 2011 IEEE Asia- Pacific Services Computing Conference. US: The Institute of Electrical and Electronics Engineers,Inc., 2011:16-23.

[19] Xing Jianchun,Wang Hongda,Song Wei,et al. Safe Regression Test Selection Based on Program Dependence Graphs [C]// Bai Xiaoying,Belli Fevzi,Bertino Elisa,et al,eds. 2012 IEEE 36th Annual Computer Software and Applications Conference Workshops. US:The Institute of Electrical and Electronics Engineers,Inc.,2012:188-193.

[20] Yang Qiliang,Lv Jian,Tao Xianping,et al. Fuzzy self-adaptation of mission- critical software under uncertainty [J]. Journal of Computer Science and Technology,2013,28(1):165-187. link1

Related Research