Improved high-frequency carrier voltage measurement for position estimation of switched-flux permanent magnet machines

T. Lin, Z. Zhu, K. Liu
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Abstract

The conventional 12/10 stator/rotor poles switched-flux permanent magnet (SFPM) machine is usually based on all poles wound topology, each phase comprising four winding coils in series connection. However, alternate coils of the same phase have different machine saliency characteristics. Moreover, in order to measure the high-frequency (HF) carrier voltage, the mid-tapered winding wires can be utilized. Consequently, the machine saliencies can be measured separately from two parts of winding coil connections. This paper investigates the influences of machine saliencies on the sensorless rotor position estimations based on different sequence of winding coil connections, in which the primary saliency may contain some additional harmonics referring to the secondary saliency that will degrade the overall sensorless control operations. Furthermore, a simple compensation method is proposed to reduce the influence of multiple saliencies to achieve more accurate sensorless rotor position estimation. By comparing with rotor positon estimations without the proposed compensation and HF carrier current based method, the effectiveness of improved sensorless rotor position estimation has been demonstrated experimentally, as well as the application to dual 3-phase SFPM machines.
用于开关磁通永磁电机位置估计的改进高频载波电压测量
传统的12/10定子/转子极开关磁通永磁(SFPM)电机通常基于全极绕线拓扑结构,每相由四个绕组串联组成。然而,相同相位的交变线圈具有不同的机器显著性特性。此外,为了测量高频载波电压,可以使用中间锥形绕组线。因此,机器的显著性可以从绕组线圈连接的两个部分分开测量。本文研究了基于不同绕组连接顺序的电机显着性对无传感器转子位置估计的影响,其中主要显着性可能包含一些与次要显着性相关的附加谐波,这些谐波会降低整体无传感器控制的运行。在此基础上,提出了一种简单的补偿方法,以减少多个显著性的影响,从而实现更精确的无传感器转子位置估计。通过与无补偿转子位置估计方法和基于高频载波电流的转子位置估计方法的比较,实验证明了改进的无传感器转子位置估计方法的有效性,并将其应用于双三相SFPM电机。
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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