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DSP-Based Sensorless Electric Motor Fault Diagnosis Tools for Electric and Hybrid Electric Vehicle Powertrain Applications

机译:适用于电动和混合动力电动汽车动力总成应用的基于DSP的无传感器电动机故障诊断工具

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摘要

The integrity of electric motors in work and passenger vehicles can best be maintained by frequently monitoring its condition. In this paper, a signal processing-based motor fault diagnosis scheme is presented in detail. The practicability and reliability of the proposed algorithm are tested on rotor asymmetry detection at zero speed, i.e., at startup and idle modes in the case of a vehicle. Regular rotor asymmetry tests are done when the motor is running at a certain speed under load with stationary current signal assumption. It is quite challenging to obtain these regular test conditions for long-enough periods of time during daily vehicle operations. In addition, automobile vibrations cause nonuniform air-gap motor operation, which directly affects the inductances of electric motors and results in a noisy current spectrum. Therefore, it is challenging to apply conventional rotor fault-detection methods while examining the condition of electric motors as part of the hybrid electric vehicle (HEV) powertrain. The proposed method overcomes the aforementioned problems by simply testing the rotor asymmetry at zero speed. This test can be achieved at startup or repeated during idle modes where the speed of the vehicle is zero. The proposed method can be implemented at no cost using the readily available electric motor inverter sensors and microprocessing unit. Induction motor fault signatures are experimentally tested online by employing the drive-embedded master processor (TMS320F2812 DSP) to prove the effectiveness of the proposed method.
机译:经常监视其状况可以最好地保持工作和乘用车中电动机的完整性。本文详细提出了一种基于信号处理的电机故障诊断方案。该算法的实用性和可靠性在零速时,即在车辆启动和怠速模式下的转子不对称检测中进行了测试。在假定负载电流信号稳定的情况下,电动机以一定速度运行时,会进行常规的转子不对称测试。在日常的车辆操作中,要在足够长的时间内获得这些常规测试条件非常具有挑战性。另外,汽车的振动会导致气隙电动机的运行不均匀,这会直接影响电动机的电感并导致噪声频谱。因此,在检查作为混合动力电动汽车(HEV)动力总成一部分的电动机的状况时,应用常规的转子故障检测方法是一项挑战。所提出的方法通过简单地在零速下测试转子不对称性而克服了上述问题。该测试可以在车辆速度为零的空转模式下启动或重复进行。所提出的方法可以使用现成的电动机逆变器传感器和微处理单元免费实现。通过使用嵌入式驱动器主处理器(TMS320F2812 DSP)在线在线测试感应电动机的故障特征,以证明该方法的有效性。

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