High-precision Sensorless Control Based on Magnetic Flux/Current Method for SRM Starting/Generating System

Shuanghong Wang, Zihui Hu, X. Cui
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引用次数: 6

Abstract

As an important part of the future multi-electric aircraft, the reliability of switched reluctance motor (SRM) starting/generating system is one of the most concerned performances. SRM control is inseparable from the position signal, but the presence of the axis position sensors brings reliability risks. Based on direct instantaneous torque control (DITC), this paper studies the position sensorless technology of SRM in the electric / generation state. Based on the current waveform of the motor in the electric/ generation state, the position partition methods suitable for two states individually are proposed to avoid low-quality position signals in the aligned and unaligned position areas. In each position area, the magnetic flux and current signals corresponding to the conducting observation phase are calculated in real time, and the position signal is obtained by looking up the table. As for the position delay caused by filtering, the speed feedback is to introduced to realize adaptive compensation. After simulation verification, compared with the single-cycle single-point position sensorless detection method, the partition position detection method based on magnetic flux/ current method is suitable for wider range of speed and has better dynamic response.
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基于磁通/电流法的SRM起动/发电系统高精度无传感器控制
作为未来多电动飞机的重要组成部分,开关磁阻电机(SRM)启动/发电系统的可靠性是人们最为关注的性能之一。SRM控制离不开位置信号,但轴向位置传感器的存在带来了可靠性风险。基于直接瞬时转矩控制(DITC),研究了SRM在发电状态下的无位置传感器技术。根据电机在发电状态下的电流波形,提出了适合两种状态的位置划分方法,以避免对准和未对准位置区域的低质量位置信号。在每个位置区域实时计算导通观测相位对应的磁通量和电流信号,通过查表得到位置信号。对于滤波引起的位置延迟,引入速度反馈实现自适应补偿。经过仿真验证,与单周期单点位置无传感器检测方法相比,基于磁通/电流法的分区位置检测方法适用于更宽的转速范围,具有更好的动态响应。
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