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Robust Current and Torque Controls for PMSM Driven Satellite Reaction Wheel

机译:PMSM驱动的卫星反作用轮的鲁棒电流和转矩控制

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摘要

This paper presents the robust current and torque controls for a satellite reaction wheel system driven by permanent magnet synchronous motor (PMSM) is presented. First, the motor nominal key parameters are estimated, and the digital signal processing (DSP)-based PMSM driven reaction wheel system using intelligent power module is established. In the proposed robust current controlled pulsewidth modulated (PWM) scheme, the feedback controller is augmented with a command feedforward controller and a simple observed disturbance robust cancellation controller. Theoretic bases and design procedures of all constituted controllers are derived in detail. The proposed control scheme is very effective in handling sinusoidal PMSM varying-frequency winding current tracking control under sinusoidal back electromotive force (EMF) disturbance. Very close and robust PMSM winding current tracking performance under varying system parameters and operating conditions can be obtained. With excellent winding current control characteristics, the robust torque control of the PMSM driven reaction wheel is then performed to yield quick observed torque control response. The driving performance of the developed reaction wheel is evaluated experimentally, the improved torque generating capability and energy conversion efficiency are confirmed from some measured results.
机译:本文介绍了由永磁同步电动机(PMSM)驱动的卫星反作用轮系统的鲁棒电流和转矩控制。首先,估算电动机的标称关键参数,并建立使用智能功率模块的基于数字信号处理(DSP)的PMSM驱动的反作用轮系统。在提出的鲁棒电流控制脉冲宽度调制(PWM)方案中,反馈控制器增加了命令前馈控制器和简单的观察到的干扰鲁棒抵消控制器。详细推导了所有组成的控制器的理论基础和设计过程。所提出的控制方案在正弦反电动势(EMF)干扰下对正弦PMSM变频绕组电流跟踪控制非常有效。在变化的系统参数和工作条件下,可以获得非常紧密和强大的PMSM绕组电流跟踪性能。具有出色的绕组电流控制特性,然后执行PMSM驱动反作用轮的鲁棒扭矩控制,以产生快速观察到的扭矩控制响应。实验评估了已开发反作用轮的驱动性能,并从一些测量结果中确认了改进的扭矩产生能力和能量转换效率。

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