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Fault-tolerant, matrix converter, permanent magnet synchronous motor drive for open-circuit failures

机译:容错矩阵转换器永磁同步电动机驱动器,用于开路故障

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摘要

A fault-tolerant matrix converter drive topology, which can be effectively used to drive a permanent magnet synchronous motor for research in critical applications, with particularly emphasis on aerospace applications, is presented. The proposed matrix converter configuration, a four output-phase matrix converter, uses a normally redundant output phase connected between the input supply and the neutral point of the motor in order to provide fault-tolerant capability in the presence of faults. This proposed fault-tolerant matrix converter can deal with open-circuit faults caused by failures in either the power converter or machine windings. Without using any additional connecting devices and without modifying the modulation technique, the satisfactory system performance under faulty operating conditions can be achieved using the developed control strategy. The space vector representation of the direct space vector modulation technique is adaptable so that the technique used for a conventional three-phase matrix converter can be applied to the four-phase matrix converter even in the fault-tolerant mode. The verification of the proposed fault-tolerant matrix converter drive is confirmed using extensive simulation and experimental results.
机译:提出了一种容错矩阵转换器驱动拓扑,该拓扑可有效地用于驱动永磁同步电动机,以用于关键应用中的研究,尤其是在航空航天应用中。所提出的矩阵转换器配置是一个四输出相矩阵转换器,它使用连接在输入电源和电动机中性点之间的通常冗余的输出相位,以便在出现故障时提供容错能力。提出的这种容错矩阵转换器可以处理由电源转换器或机器绕组中的故障引起的开路故障。无需使用任何其他连接设备,也无需修改调制技术,就可以使用开发的控制策略在故障操作条件下获得令人满意的系统性能。直接空间矢量调制技术的空间矢量表示是适应性的,从而即使在容错模式下,用于常规三相矩阵转换器的技术也可以应用于四相矩阵转换器。广泛的仿真和实验结果证实了所提出的容错矩阵转换器驱动器的验证。

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