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An Improved Rotor Position Estimation With Vector-Tracking Observer in PMSM Drives With Low-Resolution Hall-Effect Sensors

机译:具有低分辨率霍尔效应传感器的PMSM驱动器中带有矢量跟踪观测器的改进转子位置估计

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摘要

This paper presents an improved approach for estimating high-resolution rotor position in permanent-magnet synchronous motor (PMSM) drives with low-resolution Hall-effect sensors. A vector-tracking position observer in conjunction with discrete Hall sensors' output signals has been proposed, which is similar to a phase-locked loop structure. It consists of a position error detector, based on the vector cross product of the unit back-electromotive-force vectors obtained from a stator electrical model, and a proportional–integral-typed controller to make the position error rapidly converge to zero. This structure does not only compensate the misalignment effect of Hall sensors but also enhance their transient operating capability. The effectiveness of the proposed approach has been verified from several experiments in a low-voltage PMSM drive for automotive applications.
机译:本文提出了一种改进的方法,用于估计带有低分辨率霍尔效应传感器的永磁同步电动机(PMSM)驱动器中的高分辨率转子位置。已经提出了结合离散霍尔传感器的输出信号的矢量跟踪位置观测器,其类似于锁相环结构。它由一个位置误差检测器和一个比例积分型控制器组成,该位置误差检测器基于从定子电气模型获得的单位反电动势矢量的矢量叉积,以使位置误差迅速收敛为零。这种结构不仅可以补偿霍尔传感器的失准效应,还可以增强其瞬态操作能力。该方法的有效性已在汽车应用低压PMSM驱动器中的多个实验中得到验证。

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