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Simulation of an Electromechanical Spin Motor System of a Control Moment Gyroscope

机译:控制力矩陀螺仪机电自旋电机系统的仿真

摘要

A two-phase brushless DC motor (BDCM) with pulse-width modulated (PWM) voltage drive is simulated to control the flywheel speed of a control moment gyroscope (CMG). An overview of a double-gimballed control moment gyroscope (DGCMG) assembly is presented along with the CMG torque effects on the spacecraft. The operating principles of a two-phase brushless DC motor are presented and the system's electro-mechanical equations of motion are developed for the root-mean-square (RMS) currents and wheel speed. It is shown that the system is an extremely "stiff" set of first-order equations for which an implicit Euler integrator is required for a stable solution. An adaptive proportional voltage controller is presented which adjusts the PWM voltages depending on several control modes for speed, current, and torque. The simulation results illustrate the interaction between the electrical system and the load dynamics and how these influence the overall performance of the system. As will be shown, the CMG spin motor model can directly provide electrical power use and thermal power output to spacecraft subsystems for effective (average) calculations of CMG power consumption.
机译:模拟了具有脉宽调制(PWM)电压驱动器的两相无刷直流电动机(BDCM),以控制控制力矩陀螺仪(CMG)的飞轮速度。介绍了双万向控制力矩陀螺仪(DGCMG)组件的概述,以及CMG对航天器的扭矩影响。提出了两相无刷直流电动机的工作原理,并针对均方根(RMS)电流和车轮速度开发了系统的机电运动方程。结果表明,该系统是一类极其“僵硬”的一阶方程组,对于该方程组,需要一个隐式Euler积分器才能获得稳定的解。提出了一种自适应比例电压控制器,该控制器根据速度,电流和转矩的几种控制模式来调节PWM电压。仿真结果说明了电气系统与负载动态之间的相互作用,以及它们如何影响系统的整体性能。如将显示的那样,CMG自旋电动机模型可以直接向航天器子系统提供电能使用和热能输出,以进行有效(平均)的CMG功耗计算。

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    Gordeuk John; Inampudi Ravi;

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  • 年度 2016
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