Fault-Tolerant Control of Standard Three-Phase PMSM Drives Considering Copper Loss

Xueqing Wang, Zifan Zhang, Shaowei Ren, Yao Mao, Jianwei Shen, Z. Wang
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引用次数: 0

Abstract

This paper, proposed a fault-tolerant scheme to optimize the fault-tolerant performance of standard three-phase permanent-magnet synchronous motor (PMSM) drives under open-phase and open-switch faults. In the proposed scheme for the open-phase fault, the current references considering reluctance torque and overcurrent endurance of motor drive are derived. On this basis, the fault-tolerant current references are further optimized to reduce the copper loss without increasing the torque ripple. In the proposed scheme for open-switch fault, a two-mode fault-tolerant control is designed to reduce copper loss and torque ripple by using the remaining healthy switch in the faulty leg. The validity of the proposed scheme is proved by experiments.
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考虑铜损耗的标准三相PMSM驱动器容错控制
为了优化标准三相永磁同步电动机在开相和开开关故障下的容错性能,提出了一种容错方案。在该方案中,推导了考虑电机驱动磁阻转矩和过流耐力的电流参考值。在此基础上,进一步优化容错电流参考,在不增加转矩脉动的前提下降低铜损。在该方案中,设计了一种双模容错控制,利用故障分支中剩余的健康开关来减少铜损耗和转矩脉动。实验证明了该方案的有效性。
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1.20
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0.00%
发文量
8
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