Sensorless magnetic model and pm flux identification of synchronous drives at standstill

P. Pescetto, G. Pellegrino
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引用次数: 13

Abstract

This paper proposes a sensorless self-commissioning technique for PM-assisted synchronous reluctance motors. The identification of the machine's flux maps is performed at standstill without any position transducer and with no need of rotor locking. The machine is first excited with alternated high voltage pulses, injected in the estimated d and q directions of the rotor to determine its saturation curves. Then, direct current values are applied in a fixed stator direction so that the rotor aligns in specific positions giving information on the PM flux linkage. Experimental results are provided on a PM-assisted synchronous reluctance motor prototype, confirming the validity of the proposed method. The key original feature of the proposed work is the estimation of magnet flux linkage at standstill. For the motor under test, the magnet flux linkage was sensorless estimated at standstill with an error lower than 3%.
同步驱动器静止无传感器磁模型及永磁磁通辨识
提出了一种永磁同步磁阻电机无传感器自调试技术。机器磁通图的识别是在静止状态下进行的,不需要任何位置传感器,也不需要锁定转子。首先用交变高压脉冲激励机器,注入转子估计的d和q方向,以确定其饱和曲线。然后,在固定的定子方向上施加直流值,以便转子在特定位置对齐,从而提供PM磁链的信息。在永磁辅助同步磁阻电机样机上进行了实验,验证了该方法的有效性。所提工作的关键原始特征是静止状态下磁通链的估计。对于被测电机,静止状态下的磁通链是无传感器估计的,误差低于3%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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