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2012 | OriginalPaper | Chapter

62. Study of Current Controller Design and Performance Based on PMA RSM Model Decoupling

Authors : Yu Guo, Taihua Wang, Yong-le Ai

Published in: Electrical, Information Engineering and Mechatronics 2011

Publisher: Springer London

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Abstract

The permanent magnet assisted reluctance synchronous machine (PMA RSM) is a controlled object of multi-variable, nonlinearity and strong coupling. The fact that d-axis current can be controlled by d-axis voltage directly, same as the q-axis current, can not be realized even if the field current and torque current have been decoupled in the synchronous coordinates. A decoupling method for the electrical model is presented, which means the speed voltage and mutual inductance voltage are subtracted in the machine model proposed. Therefore the control of d- and q-axis components is changed to single-loop independent control system. Then a current controller is designed, which is applied to the current control of PMA RSM. The result from simulation shows that it is of high performance of dynamic and robustness.

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Metadata
Title
Study of Current Controller Design and Performance Based on PMA RSM Model Decoupling
Authors
Yu Guo
Taihua Wang
Yong-le Ai
Copyright Year
2012
Publisher
Springer London
DOI
https://doi.org/10.1007/978-1-4471-2467-2_62