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Experimental Investigation of Inverter Open-Circuit Fault Diagnosis for Bi-Harmonic Five-Phase Permanent Magnet Drive

机译:双谐波五相永磁变频器逆变器开路故障诊断的实验研究

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摘要

This paper proposes a procedure that is suitable for experimental investigation of real-time open-switch and open-phase faults diagnosis of a five-leg Voltage Source Inverter (VSI) feeding a five-phase bi-harmonic Permanent Magnet Synchronous Machine (5-Φ B-PMSM). The algorithm is based on the specific characteristics of multiphase machines, which allows inverter fault detection with sufficient robustness of the algorithm in the presence of fundamental and third harmonic components. Firstly, the inverter fault effects analysis is achieved in the characteristic subspaces of the five-phase PMSM. Specificities that are interesting for the elaboration of a real-time Fault Detection and Identification (FDI) process are highlighted. Original and particular algorithms are used for an accurate two-dimensional normalized fault vector extraction in a defined fault reference frame. This frame is dedicated only for fault detection and identification. To ensure the high immunity of the FDI process against transient states, a particular normalization procedure is applied. The normalized diagnostic signals are formulated from the defined frame and others variables derived from the reference and measured currents. Simulation and experimental results of open-switch and open-phase faults are provided to validate the proposed algorithm.
机译:本文提出了一种适用于为五相双谐波永磁同步电机供电的五支腿电压源逆变器(VSI)实时实时开路和断相故障诊断的实验程序(5- ΦB-PMSM)。该算法基于多相电机的特定特性,在存在基波和三次谐波分量的情况下,逆变器故障检测算法具有足够的鲁棒性。首先,对五相永磁同步电机的特征子空间进行了逆变器故障影响分析。着重介绍了详细的实时故障检测和识别(FDI)流程。原始算法和特定算法用于在定义的故障参考框架中进行精确的二维归一化故障向量提取。该框架仅用于故障检测和识别。为了确保FDI过程对瞬态的高度免疫力,将应用特定的规范化过程。根据定义的框架以及从参考电流和测量电流得出的其他变量来制定标准化的诊断信号。提供了开路开关和断相故障的仿真和实验结果,以验证所提出的算法。

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