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A reliable initial rotor position estimation method for sensorless control of interior permanent magnet synchronous motors

机译:用于内部永磁同步电动机无传感器控制的可靠初始转子位置估计方法

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摘要

In this paper, a novel initial rotor position estimation method for reliable start-up of the IPMSM is presented. The proposed method combines the improved high frequency pulse signal injection with positive and negative d-axis current bias injection. Differing from the conventional initial rotor position detection scheme, the injection and the field-oriented control periods are separated in the proposed method. Therefore, the filters are not needed in the process of high-frequency response current and fundamental current extraction. The magnet polarity can be estimated by exciting the positive and negative d-axis currents. Afterwards, the peak values of d-axis current during the voltage injection period are accumulated to detect the rotor magnetic polarity. The proposed method can improve the reliability of the magnet polarity detection. Moreover, it is suitable for both the standstill rotor application and the free-running rotor application. The effectiveness of the proposed method is verified on a 1.5 kW IPMSM drive platform. (C) 2019 Published by Elsevier Ltd on behalf of ISA.
机译:本文介绍了一种用于可靠启动IPMSM的初始转子位置估计方法。所提出的方法将改进的高频脉冲信号注入与正和负D轴电流偏置注入结合。与传统的初始转子位置检测方案不同,以所提出的方法分开注射和面向导向的控制周期。因此,在高频响应电流和基波电流提取过程中不需要滤波器。可以通过激发正和负D轴电流来估计磁极极性。然后,累积在电压注入时段​​期间的D轴电流的峰值以检测转子磁极性。该方法可以提高磁极极性检测的可靠性。此外,它适用于静止转子应用和自由运行的转子应用。在1.5 kW IPMSM驱动器平台上验证了所提出的方法的有效性。 (c)2019年由elsevier有限公司发布代表ISA。

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