位置传感器精度对推进IPM驱动器性能的影响

S. Gopalakrishnan, L. Hao, C. Namuduri, K. Rahman, A. Omekanda, C. Freitas
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引用次数: 12

摘要

本文研究了转子位置传感器精度对汽车推进用内嵌式永磁(IPM)电机驱动性能的影响。IPM机床转矩产生的解析方程表明,在高速运行时,机床输出转矩随角度误差急剧下降。这也表明需要高精度和高分辨率的转子位置反馈,特别是在磁链减弱区运行。有限元分析证实了这一结论,并估计了由于位置传感器误差造成的扭矩和功率下降。通过测量实验驱动系统的转矩/速度曲线,验证了分析和仿真结果。在实验台上测量了一种典型的高分辨率/精度传感器在不同工作速度和温度下的动态角度误差,并利用测量数据计算了角度误差对转矩脉动的影响。本文详细介绍了这些结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of position sensor accuracy on the performance of propulsion IPM drives
This paper addresses the influence of rotor position sensor accuracy on the performance of the Interior Permanent Magnet (IPM) motor drives used for automotive propulsion application. Analytical equations for the torque production in IPM machines show that the machine output torque drops sharply with angle error at high operating speeds. This also shows the need for rotor position feedback with high accuracy and resolution, especially for operation in the flux weakening region. Finite element analysis was performed to substantiate this conclusion and also to estimate the torque and power degradation due to the position sensor error. The torque/speed curves on an experimental drive system was measured on the dyno to corroborate the analytical and simulation results. The dynamic angle error of a typical high resolution/accuracy sensor was measured on the test bench at various operating speeds and temperatures and the measured data was used for computing the impact of angle error on the torque ripple. The details of these results are presented in the paper.
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