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An Envelope-Prediction-Based Sensorless Rotor Position Observation Scheme for LCI-Fed EESM at Zero and Low Speed

机译:基于包络预测的无传感器转子位置观察方案,用于LCI馈电EESM处于零和低速

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摘要

An envelope-prediction-based sensorless rotor position observation scheme is proposed for a load commutated inverter (LCI)-fed electrically excited synchronous motor (EESM) at zero and low speed. The proposed rotor position observation scheme does not need to utilize the full controlled power device, nor to modify the LCI drive topology. An interval trigger mode for the exciter control is proposed to generate the appropriate fixed-frequency injected signal. The bandpass filters (BPFs) are optimized to extract the target signal, and the observation error due to the BPF is analyzed and compensated. A specific signal sampling method and an envelope-prediction algorithm are presented to simplify calculation and improve the observation accuracy. A normalized phase-locked loop is designed such that the observer has a better observational performance. Finally, the proposed rotor position observation scheme is verified by a 15-kW LCI-fed EESM experimental platform.
机译:提出了一种信封预测的无传感器转子位置观察方案,用于零和低速的负载换向逆变器(LCI)-FED电激励同步电动机(EESM)。所提出的转子位置观察方案不需要利用完全控制的功率装置,也不需要修改LCI驱动拓扑。提出了一种用于激励器控制的间隔触发模式以产生适当的固定频率注入信号。用于提取目标信号的带通滤波器(BPF),分析和补偿由BPF引起的观察误差。提出了一种特定的信号采样方法和包络预测算法以简化计算并提高观察精度。设计归一化锁相环,使得观察者具有更好的观察性能。最后,通过15千瓦LCI馈电EESM实验平台验证所提出的转子位置观察方案。

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