Study on Decoupling Control of Bearingless Permanent Magnet Synchronous Motors Based on Inverse System Theory

Fei Decheng、 Zhu Huangqiu

Strategic Study of CAE ›› 2005, Vol. 7 ›› Issue (11) : 48-54.

PDF(3311 KB)
PDF(3311 KB)
Strategic Study of CAE ›› 2005, Vol. 7 ›› Issue (11) : 48-54.
Academic Papers

Study on Decoupling Control of Bearingless Permanent Magnet Synchronous Motors Based on Inverse System Theory

  • Fei Decheng、 Zhu Huangqiu

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Abstract

A decoupling control approach based on dynamic inverse system theory has been developed for the bearingless permanent magnet synchronous motor (BPMSM), which is a multi-variable, nonlinear and strong-coupled system. Firstly, inverse system theory is briefly introduced. Secondly, the principle of suspension forces is expounded, and the state equations of torque force and radial suspension forces are set up. Then feasibility of decoupling control based on dynamic inversion theory for BPMSM is discussed in detail, and the dynamic decoupling control arithmetic based on inverse system is deduced. Finally, the simulation results have showed that this kind of control strategy can realize dynamic decoupling control between torque force and radial suspension forces, and the control system has fine dynamic and static performance.

Keywords

BPMSM / inverse system / dynamic feedback linearization / decoupling control

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Fei Decheng,Zhu Huangqiu. Study on Decoupling Control of Bearingless Permanent Magnet Synchronous Motors Based on Inverse System Theory. Strategic Study of CAE, 2005, 7(11): 48‒54
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