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Signal-injection-aided position and speed estimation for PMSM drives with low-resolution position sensors

机译:具有低分辨率位置传感器的PMSM驱动器的信号注入辅助位置和速度估计

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The aim of this paper is to reduce the low-speed limitation of PMSM drives that use low-resolution position sensors. It is recognized, for the first time, that this may be overcome by merging signal-injection-based self-sensing and low-resolution sensor technologies, if the machine possesses a detectable amount of electromagnetic saliency. The supplementary information coming from the injection of an additional high frequency magnetic field may be used to aid the low-resolution-based position and speed estimation algorithm, significantly improving the low-speed performance of the drive. In this research contribution, the quantization-harmonic decoupling vector-tracking observer is used for speed and position estimation. It is shown how this algorithm can be easily integrated with any high frequency signal injection method. Extensive experimental results are provided demonstrating the significant performance improvements at low speeds for a PMSM drive using 1, 2 and 3 bit-per-pole-pair sensing systems, when signal injection is used to aid position and speed estimation.
机译:本文的目的是减少使用低分辨率位置传感器的PMSM驱动器的低速限制。首次认识到,如果机器具有可检测量的电磁显着性,则可以通过合并基于信号注入的自感应和低分辨率传感器技术来克服此问题。来自额外高频磁场注入的补充信息可用于辅助基于低分辨率的位置和速度估计算法,从而显着改善驱动器的低速性能。在这项研究中,量化谐波解耦矢量跟踪观测器用于速度和位置估计。展示了如何将该算法轻松地与任何高频信号注入方法集成在一起。提供了广泛的实验结果,表明当使用信号注入辅助位置和速度估算时,使用每极对1、2和3位的PMSM驱动器在低速时的显着性能改善。

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