Sensorless control of PMSM based on low frequency voltage injection at low speeds and standstill

Yituo Li, Haifeng Lu, W. Qu, Shuang Sheng, Zhengyu Wang
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引用次数: 4

Abstract

Most sensorless control methods have problems when they are used in surface-mounted permanent magnet synchronous motor (PMSM) that has little salient effect. To solve this problem, a novel low frequency voltage injection method is developed in this paper. Low frequency rotating voltage vectors are imposed on the stator, and the current responses are analyzed to get the rotor position information. Different from high frequency voltage injection, electric torque produced by low frequency voltage would has enough time to move the rotor a little but not big enough to rotate the rotor. The electric torque, friction torque and the cogging torque together will make the rotor oscillate around an equilibrium point. The back electromotive force produced by the rotor movement would have effect in the current response, which is finally used in the rotor position estimation. A rotor position estimation structure based on phase lock loop (PLL) is designed to continuously estimate the rotor position at low speeds and some offline experiments and compensation are added to get more accuracy estimation results. Experiments have been finished on a 1.25 kW PMSM at low speeds and standstill, the correctness of the proposed method has been demonstrated.
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基于低频电压注入的永磁同步电机低速静止无传感器控制
大多数无传感器控制方法在应用于面装式永磁同步电机时存在着控制效果不显著的问题。为了解决这一问题,本文提出了一种新的低频电压注入方法。在定子上施加低频旋转电压矢量,分析电流响应,得到转子位置信息。与高频电压注入不同,低频电压产生的电转矩有足够的时间使转子移动一点,但不足以使转子旋转。电转矩、摩擦转矩和齿槽转矩共同作用,使转子围绕一个平衡点振荡。转子运动产生的反电动势会对电流响应产生影响,最终用于转子位置估计。设计了一种基于锁相环(PLL)的转子位置估计结构,实现了低速下转子位置的连续估计,并加入了一些离线实验和补偿,以获得更准确的估计结果。在1.25 kW永磁同步电机上进行了低速静止实验,验证了该方法的正确性。
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