Low-Speed Sensorless Control of a Surface Mounted Permanent Magnet Motor in an e-Bike Application

S. Filho, Le Sun, T. Lambert, M. Ikhlas, Yinye Yang, A. Emadi
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引用次数: 3

Abstract

This paper presents a low-speed sensorless control implementation on a surface-mounted permanent magnet (SPM) motor for an e-bike application, using a low-cost fixed-point DSP. A novel dynamic PLL gain algorithm is proposed to improve the inherent reduced performance of the sensorless control under transient response. The angular offset caused by the magnetic field distortion is verified experimentally and using Finite Element Analysis (FEA). The acoustic noise and system stability are analyzed with different amplitudes and frequencies of the high-frequency (HF) voltage signal injection, and an adaptive frequency selection algorithm is proposed to reduce the acoustic noise production during a wide load condition operation.
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表面贴装永磁电机低速无传感器控制在电动自行车中的应用
本文介绍了一种低速无传感器控制的实现在表面贴装永磁(SPM)电机上的电动自行车应用,使用低成本的定点DSP。针对暂态响应下无传感器控制固有的性能下降问题,提出了一种新的动态锁相环增益算法。通过实验和有限元分析验证了磁场畸变引起的角偏移。分析了高频电压信号注入的不同幅值和频率对系统噪声和稳定性的影响,提出了一种自适应频率选择算法来降低大负荷工况下的噪声产生。
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