用于容错永磁驱动器的系列架构:具有一个或两个直流电压源的工作模式

M. Shamsi-Nejad, B. Nahid-Mobarakeh, S. Pierfederici, F. Meibody-Tabar
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引用次数: 6

摘要

本文研究了一种基于串联结构(一个或两个直流电源、两个电压源逆变器和一个永磁同步电机)的容错驱动。考虑三种不同的工作模式:正常模式、开路降级模式和短路降级模式。针对每种情况,提出了一种适合的转矩控制策略,并进行了应用和测试。主要贡献在于退化模式的控制策略。对于开相模式,考虑了不同的工作准则。对于短路故障,提出了两种解决方案。本文提出的策略在航空航天应用的驱动器上进行了测试。本文提出的技术允许在故障条件下实时运行,并且易于实现。实验结果表明了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Series architecture for fault tolerant PM drives: Operating modes with one or two DC voltage source(s)
A fault tolerant drive based on a series architecture (one or two DC sources, two voltage source inverters and a PMSM) is studied in this paper. Three different operating modes are considered: normal mode, open-circuit degraded mode and short-circuit degraded mode. For each case, an adapted torque control strategy is proposed, applied and tested. The main contribution lies in the control strategies for degraded modes. For the open phase mode, different operating criteria are considered. For short-circuit faults, two solutions are proposed. The proposed strategies in this paper are tested on a drive realized for aerospace applications. The proposed techniques here allow operating under fault conditions in real-time and their implementation is easy. The experimental results show the validity of the proposed methods.
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