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首页> 外文期刊>Industry Applications, IEEE Transactions on >Surface Permanent-Magnet Machine Self-Sensing at Zero and Low Speeds Using Improved Observer for Position, Velocity, and Disturbance Torque Estimation
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Surface Permanent-Magnet Machine Self-Sensing at Zero and Low Speeds Using Improved Observer for Position, Velocity, and Disturbance Torque Estimation

机译:使用改进的观测器进行位置,速度和扰动转矩估计的零速和低速表面永磁电机自感测

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摘要

This paper proposes an improved method for the estimation of position, velocity, and disturbance torque in a surface permanent-magnet (SPM) machine self-sensing (position sensorless) drive that uses high-frequency (HF) voltage injection. SPM machines traditionally do not have enough position-dependent signals because their symmetric rotors result in near-zero spatial saliency. A separate disturbance observer and a saliency-tracking observer with speed-varying bandwidth (BW) tuning are used together to improve the disturbance rejection performance while maintaining the accuracy of self-sensing position and velocity estimation. According to the experimental evaluation, the proposed estimation method can achieve higher BW for the disturbance estimation and decoupling which can increase the stiffness of SPM machine closed-loop self-sensing control. This paper includes experimental comparative evaluation of closed-loop encoder-based versus closed-loop self-sensing-based operation of a SPM machine drive.
机译:本文提出了一种改进的方法,用于估计使用高频(HF)电压注入的表面永磁体(SPM)机器自感应(无位置传感器)驱动器中的位置,速度和干扰转矩。传统上,SPM机器没有足够的位置相关信号,因为它们的对称转子导致空间显着性接近零。结合使用单独的干扰观测器和具有时变带宽(BW)调整的显着性跟踪观测器,可以提高干扰抑制性能,同时保持自感应位置和速度估计的准确性。根据实验评估,所提出的估计方法可以实现更高的带宽,以进行干扰估计和解耦,从而提高SPM电机闭环自感应控制的刚度。本文包括对SPM机器驱动器的基于闭环编码器与基于闭环自感应操作的实验比较评估。

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