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논문 기본 정보

자료유형
학술저널
저자정보
Qiming Cheng (Shanghai University of Electric Power) Lin Wei (Shanghai University of Electric Power)
저널정보
전력전자학회 JOURNAL OF POWER ELECTRONICS JOURNAL OF POWER ELECTRONICS Vol.19 No.6
발행연도
2019.11
수록면
1,527 - 1,535 (9page)

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초록· 키워드

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Because of the shortcomings of the PID controllers and traditional drive systems of permanent magnet synchronous motors (PMSMs), a PMSM passivity-based control (PBC) drive system based on a quasi-Z source matrix converter (QZMC) is proposed in this paper. The traditional matrix converter is a buck converter with a maximum voltage transmission ratio of only 0.866, which limits the performance of the driven motor. Therefore, in this paper a quasi-Z source circuit is added to the input side of the two-stage matrix converter (TSMC) and its working principle has also been verified. In addition, the controller of the speed loop and current loop in the conventional vector control of a PMSM is a PID controller. The PID controller has the problem since its parameters are difficult to adjust and its anti-interference capability is limited. As a result, a port controlled dissipative Hamiltonian model (PCHD) of a PMSM is established. Thereafter a passivity-based controller based on the interconnection and damping assignment (IDA) of a QZMC-PMSM is designed, and the stability of the equilibrium point is theoretically verified. Simulation and experimental results show that the designed PBC control system of a PMSM based on a QZMC can make the PMSM run stably at the rated speed. In addition, the system has strong robustness, as well as good dynamic and static performances.

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Abstract
I. INTRODUCTION
II. OVERALL STRUCTURE OF A QZMC-PMSM PBC CONTROL SYSTEM
III. WORKING PRINCIPLE AND MODELING OF A QZMC
IV. PMSM BASED ON A PCHD MODEL AND PBC CONTROL
V. STABILITY ANALYSIS AND CONTROLLER DESIGN
VI. SIMULATIONS
VII. EXPERIMENT
VIII. CONCLUSION
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