IPMSM sensorless control technology based on high frequency square wave injection method

Zhiliang Yu, Yu Zhang, Yu Feng, Yuan Wang, Chengmiao Xu
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Abstract

Aiming at a series of problems caused by the position sensor required by the salient pole permanent magnet synchronous motor (IPMSM) control system, a high-frequency square wave injection sensorless control algorithm suitable for IPMSM low-speed control system is realized in this paper. Compared with other sensorless control algorithms, its advantages are that it avoids the system delay caused by the filter by injecting high-frequency square wave signal, and has good stability and robustness at low speed. The feasibility and effectiveness of this method are verified by simulation. At the same time, it shows that the high-frequency square wave injection method has good accuracy of rotor position estimation, and can ensure the good stability and dynamic performance of the whole drive system. Through the simulation results, better injection voltage amplitude is selected to reduce the electromagnetic interference and electromagnetic noise caused by high-frequency square wave injection signal.
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基于高频方波注入法的 IPMSM 无传感器控制技术
针对磁极永磁同步电机(IPMSM)控制系统所需的位置传感器带来的一系列问题,本文实现了一种适用于 IPMSM 低速控制系统的高频方波注入式无传感器控制算法。与其他无传感器控制算法相比,其优点在于通过注入高频方波信号避免了滤波器造成的系统延迟,并且在低速时具有良好的稳定性和鲁棒性。通过仿真验证了该方法的可行性和有效性。同时表明,高频方波注入法具有良好的转子位置估计精度,能确保整个驱动系统具有良好的稳定性和动态性能。通过仿真结果,选择了较好的注入电压幅值,降低了高频方波注入信号带来的电磁干扰和电磁噪声。
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