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Detection and Isolation of Asymmetrical Short-circuit Faults in Permanent-Magnet Synchronous Machines

机译:永磁同步机中不对称短路故障的检测与隔离

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Phase-to-phase short-circuit faults in a permanent-magnet synchronous machines are quite dangerous because of the extremely high short-circuit transient current after fault. This paper presents a fault detection and identification diagnosis approach for asymmetrical faults in permanent-magnet synchronous machines, considering both inter-turn and phase-to-phase short-circuit faults, and employing both current- and voltage-based residual along with the cumulative-sum algorithm. The sum of positive- and negative-sequence current-and voltage-phase angles is used to identify the faulty phase(s); the two fault types are distinguished by defining different detection thresholds for the residuals. Simulations of phase-to-phase short-circuit with different short-circuit resistance have been carried to obtain the values of faulty phase indicators. Both the simulation results and the proposed diagnosis have been verified by practical experiments on a 2-kW test bench.
机译:由于故障后的极高短路瞬态电流,永磁同步机中的相位到相位短路故障非常危险。本文介绍了永磁同步机中不对称断层的故障检测和识别诊断方法,考虑到跨匝间和相位短路故障,以及采用电流和基于电压的残差以及累积-Sum算法。正序和负序电流和电压相角的总和用于识别故障阶段;通过定义残差的不同检测阈值来区分两个故障类型。已经承载了具有不同短路电阻的相位短路的模拟以获得故障相位指示器的值。模拟结果和所提出的诊断都是通过在2-KW测试台上的实际实验验证的。

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