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FDI based on an adaptive observer for current and speed sensors of PMSM drives

机译:基于自适应观测器的FDI,用于PMSM驱动器的电流和速度传感器

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摘要

This paper deals with a new method of current and speed sensors faults detection isolation (FDI) and identification for a permanent magnet synchronous motor (PMSM) drives. A new state variable is introduced so that an augmented system can be constructed to treat PMSM sensor faults as actuator faults. This method uses the PMSM model and a bank of adaptive observers to generate residuals. The residuals results are used for sensor fault detection. A logic algorithm is built in such a way to isolate and identify the faulty sensor for a stator phase current fault after detecting the fault occurrence. Simulation results are presented to illustrate the functionality of theoretical developments. Experimental results with 1.1-kW PMSM have validated the effectiveness of the proposed FDI method. The experimental implementation is carried out on powerful dSpace DS1103 controller board based on the DSP TMS320F240.
机译:本文研究了一种新的电流和速度传感器故障检测隔离(FDI)和永磁同步电动机(PMSM)驱动器识别的方法。引入了一个新的状态变量,以便可以构建一个增强的系统来将PMSM传感器故障视为执行器故障。该方法使用PMSM模型和一组自适应观测器来生成残差。残差结果用于传感器故障检测。在检测到故障发生之后,以这种方式构建逻辑算法,以隔离和识别定子相电流故障的故障传感器。仿真结果表明了理论发展的功能。 1.1 kW PMSM的实验结果验证了所提出的FDI方法的有效性。实验实现是在基于DSP TMS320F240的功能强大的dSpace DS1103控制器板上进行的。

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