A Simple Method for Stator Inductance and Resistance Estimation for PMSM at Standstill

Justas Dilys, V. Stankevič
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引用次数: 1

Abstract

An accurate stator resistance and inductance are necessary for high-performance permanent magnet synchronous motor (PMSM) control. The stator resistance and inductance can be estimated during motor standstill operation. This study proposes a standstill estimation method for the determination of dq-axis inductances and resistance of a PMSM drive system fed by a conventional voltage source inverter (VSI). The proposed method estimates both inductance and the rotor's position using the same algorithm, and knowledge of its initial position is not required. The d- and q-axis inductances were estimated by applying three short-time voltage pulses and measuring phase current peak values. The stator's resistance is estimated by monitoring the exponential decay process of the direct axis current. The method was verified by simulation and experiments conducted on two different PM synchronous motors. A good agreement of simulation and experimental results was obtained. Moreover, the proposed method is relatively simple and can identify stator resistance and inductance at any motor load condition. Compared to the existing parameter estimation strategies, the proposed estimation scheme has a relatively faster estimation time. Additionally, it is shown that the method accounts for the dead-time effect as well.
永磁同步电机静止状态定子电感和电阻的一种简单估计方法
准确的定子电阻和电感是高性能永磁同步电机控制的必要条件。定子电阻和电感可以在电机静止运行时估计出来。本文提出了一种静止估计方法,用于确定由传统电压源逆变器(VSI)供电的永磁同步电机驱动系统的dq轴电感和电阻。该方法使用相同的算法来估计电感和转子的位置,并且不需要知道转子的初始位置。通过施加三个短时电压脉冲和测量相电流峰值来估计d轴和q轴电感。通过监测直流轴电流的指数衰减过程来估计定子电阻。在两台不同的永磁同步电机上进行了仿真和实验,验证了该方法的有效性。仿真结果与实验结果吻合较好。此外,该方法相对简单,可以在任何电机负载条件下识别定子电阻和电感。与现有的参数估计策略相比,该估计方案具有较快的估计时间。此外,该方法还考虑了死区效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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