基于FPGA的IPMSM基本PWM无励磁传感器电流导数测量系统的评估

D. Guan, M. X. Bui, D. Xiao, M. F. Rahman
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引用次数: 11

摘要

基波式PWM励磁(FPE)是近年来在电驱动系统中出现的一种利用电流导数测量来估计转子位置的无传感器电机控制方法。然而,IGBT开关产生的寄生效应会引起电流的高频振荡,因此在这些高频振荡消失之前无法进行电流导数估计。在这种情况下,电压矢量需要扩展到最小的脉冲宽度,以便有准确的电流导数估计。然而,电压矢量的扩展会导致电流畸变,降低机器的性能,通过插入相反的电压矢量来补偿。本文将简要介绍FPE方法,然后重点介绍FPE方法中基于电流导数的位置估计的评估,该方法在FPGA中使用高带宽电流传感器和最小二乘曲线拟合算法。通过机械位置传感器验证了位置估计的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of an FPGA current derivative measurement system for the fundamental PWM excitation sensorless method for IPMSM
The Fundamental PWM Excitation (FPE) is a recent sensorless motor control method in the electrical drive system which uses the current derivative measurement to estimate the rotor position. However, parasitic effects arising from the IGBT switches cause high frequency oscillation in current, so the current derivative estimation cannot be made until these high frequency oscillations die down. In this case, the voltage vector needs to be extended to the minimal pulse width in order to have accurate current derivative estimation. The voltage vector extension however leads to current distortion and reduces the performance of machine, which are compensated by inserting opposite voltage vectors. This paper will describe the FPE method briefly and then focus on the evaluation of current derivative based position estimation in the FPE method which uses a high-bandwidth current sensor and a Least Square curve fitting algorithm in an FPGA. Position estimation accuracy is checked experimentally via a mechanical position sensor.
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