Rotor position estimation for dual-three-phase permanent magnet synchronous machine based on third harmonic back-EMF

J. Liu, Z. Zhu
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引用次数: 9

Abstract

In this paper, an improved rotor position estimation strategy based on third harmonic back-EMF for a dual-three-phase permanent magnet synchronous machine (PMSM) is proposed. Due to the phase shift of π/6 between the two sets of windings in dual-three-phase PMSM, the triplen harmonic flux-linkages derived from the measured triplen harmonic back-EMFs are with constant amplitude and orthogonal under third harmonic reference frame. By applying EKF based rotor position estimator the rotor position can be estimated even though there may contain too much high order harmonic components. Furthermore, to improve the robustness and frequency response, the speed-dependent triplen harmonic back-EMF can be directly applied for rotor position estimation by estimator with speed-variable parameters without any filter. The proposed strategies have been implemented on a dSPACE platform with a prototype of dual-three-phase PMSM. The experimental results prove that both of the proposed rotor position estimation strategies have accurate rotor position estimation under steady-state, whilst the strategy based on third harmonic back-EMF can achieve outstanding dynamic performance of rotor estimation due to the removal of all filters.
基于三次谐波反电动势的双三相永磁同步电机转子位置估计
提出了一种改进的基于三次谐波反电动势的双三相永磁同步电机转子位置估计策略。由于双三相永磁同步电机中两组绕组之间存在π/6的相移,在三次谐波参考系下,由测量的三次谐波反电磁场导出的三次谐波磁链具有等幅值且正交。利用基于EKF的转子位置估计器,即使转子位置中含有过多的高次谐波分量,也能估计出转子位置。此外,为了提高鲁棒性和频率响应,可以将速度相关的三次谐波反电动势直接应用于转速变参数估计器的转子位置估计,而不需要任何滤波器。所提出的策略已在dSPACE平台上与双三相PMSM原型一起实现。实验结果表明,所提出的两种转子位置估计策略在稳态下都有准确的转子位置估计,而基于三次谐波反电动势的转子位置估计策略由于去除了所有滤波器,能够获得较好的转子动态估计性能。
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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