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Analysis and Test Research for Three-Phase Short-Circuit of Permanent Magnet Synchronous Motor for an Electric Vehicle

机译:电动汽车永磁同步电动机三相短路的分析与试验研究

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Permanent magnet synchronous motor (PMSM) is widely used in the electric vehicle as a drive motor. For specific application requirements of the electric vehicle motor system, there are new faults and application characteristics in motor system's three-phase short-circuit. Based on the dq axis coordinate system mathematical model of PMSM, this paper derives the dq axis current transient equations of three-phase transient short-circuit with load or without load in initial state. Combined electric vehicle PMSM operating characteristics, based on the typical working conditions, this paper analyzes the influences of motor demagnetization risk in different conditions by comparing the transient current changing process simulation results of different initial transient dq axis currents. Then according to the characteristics of the three-phase transient short-circuit, designs and builds a test platform, and verifies the correctness of the analysis and mathematical simulation models by testing. It provides an important theoretical analysis and test verification methods for analyzing the electric vehicle PMSM three-phase short-current function and determining the risk of demagnetization.
机译:永磁同步电动机(PMSM)广泛用于电动车辆作为驱动马达。对于电动汽车电机系统的特定应用要求,电机系统三相短路中存在新的故障和应用特性。基于PMSM的DQ轴坐标系数学模型,本文通过初始状态引导了三相瞬态短路的DQ轴电流瞬态方程。基于典型工作条件的基于典型的工作条件,综合电动汽车PMSM操作特性通过比较不同初始瞬态DQ轴电流的瞬态电流变化处理仿真结果,分析了不同条件下的电动机退磁风险的影响。然后根据三相瞬态短路,设计和构建测试平台的特性,并通过测试来验证分析和数学模拟模型的正确性。它提供了一种重要的理论分析和测试验证方法,用于分析电动车辆PMSM三相短电流函数并确定退磁风险。

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