Optimizing Designed Variable Speed Control Moment Gyroscopes with Variable Skew Angle

Feng Liu, Feng Gao, Xiaojun Ding
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Abstract

Large torque can be output by the single gimbal control momentum gyroscope (SGCMG) based on the principle of the gyroscopic precession. However, the singularity is a major obstacle to successfully implement the task of the attitude control. The singularity can be avoided by the additional variable flywheel speed of variable speed control moment gyroscopes (VSCMG). Unfortunately, some kind of singularity cannot be effectively avoided. Consequently, the output toque can be only supported by the reaction torque of the flywheel when the singularity is encountered, and the consume power that is determined by the flywheel speed and reaction torque can be greatly increased when the flywheel spin rate over one thousand revolutions per minute. In this paper, the pyramid configuration with variable skew angle of the VSCMG is considered. A new steering law for the VSCMG with variable skew angle is proposed. The singularity that cannot be avoided by the varying flywheel speed can be effectively avoided with assisting of varying the skew angle. Consequently, the requirement of flywheel torque can be reduced. At last, the optimizing VSCMG with variable skew angle can be cast as a multi-objective function with multi-constraints. The particle swarm optimization method is used to solve the optimizing problem. In summary, the VSCMG with variable skew angle can be redesigned with considering of the singularity avoidance and minimizing system power.
优化设计的变倾角变速控制力矩陀螺仪
基于陀螺进动原理的单云台控制动量陀螺仪(SGCMG)可以输出大扭矩。然而,奇异性是成功实现姿态控制任务的主要障碍。通过变速控制力矩陀螺仪附加可变飞轮转速,可以避免奇异性的产生。不幸的是,某种奇点是无法有效避免的。因此,当遇到奇点时,输出转矩只能由飞轮的反作用转矩来支撑,当飞轮转速超过每分钟一千转时,由飞轮转速和反作用转矩决定的消耗功率可以大大增加。本文考虑了变斜角锥形的VSCMG结构。提出了一种新的变斜角VSCMG转向规律。改变飞轮转速所不能避免的奇异性,可以通过改变斜角的辅助来有效地避免。从而降低了对飞轮转矩的要求。最后,将优化的变斜角VSCMG转化为多约束的多目标函数。采用粒子群优化方法求解优化问题。综上所述,可以在考虑避免奇异性和系统功率最小化的情况下,对变斜角VSCMG进行重新设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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