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Fault diagnosis scheme for single and simultaneous open-circuit faults of voltage-source inverters on the basis of fault online simulation

机译:基于故障在线模拟的电压源逆变器的单一和同时开路故障的故障诊断方案

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摘要

This paper presents a fault online simulation (FOS)-based diagnosis scheme for single and simultaneous open-circuit faults of voltage-source inverters in closed-loop-controlled permanent magnet synchronous motor (PMSM) drive systems. First, the hybrid model (HM) of the motor drive system is established, and the current observer is designed according to the normal HM to detect the fault. This approach can eliminate the effects of speed and load transients and significantly improve the immunity to false alarms. The fault class is then judged according to the current vector phase to reduce the computation load and improve diagnostic reliability. Finally, the fault is isolated on the basis of the FOS technique, the possible fault types are simulated online using the HM, and the simulated residuals between the simulated and measured currents are used for fault isolation. The suggested method avoids extra sensors, is robust to false alarms, and has a relatively fast diagnosis speed. Simulations and experiments validate the proposed diagnosis scheme.
机译:本文介绍了用于闭环控制永磁同步电动机(PMSM)驱动系统的电压源逆变器的单一和同时开路故障的基于在线仿真(FOS)的诊断方案。首先,建立电动机驱动系统的混合模型(HM),并且当前观察者根据正常的HM设计以检测故障。这种方法可以消除速度和负载瞬变的影响,并显着提高对误报的抗扰度。然后根据当前向量阶段判断故障类以减少计算负载并提高诊断可靠性。最后,在FOS技术的基础上孤立故障,可能的故障类型使用HM在线在线模拟,并且模拟和测量电流之间的模拟残差用于故障隔离。建议的方法避免了额外的传感器,对误报是鲁棒的,并且具有相对快速的诊断速度。仿真和实验验证了所提出的诊断计划。

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