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A new momentum management controller for the space station

机译:用于空间站的新型动量管理控制器

摘要

A new approach to CMG (control moment gyro) momentum management and attitude control of the Space Station is developed. The control algorithm utilizes both the gravity-gradient and gyroscopic torques to seek torque equilibrium attitude in the presence of secular and cyclic disturbances. Depending upon mission requirements, either pitch attitude or pitch-axis CMG momentum can be held constant: yaw attitude and roll-axis CMG momentum can be held constant, while roll attitude and yaw-axis CMG momentum cannot be held constant. As a result, the overall attitude and CMG momentum oscillations caused by cyclic aero-dynamic disturbances are minimized. A state feedback controller with minimal computer storage requirement for gain scheduling is also developed. The overall closed-loop system is stable for + or - 30 percent inertia matrix variations and has more than + or - 10 dB and 45 deg stability margins in each loop.
机译:开发了一种新的方法来控制空间站的CMG(控制力矩陀螺)动量和姿态。在存在长期和周期性干扰的情况下,该控制算法利用重力梯度和陀螺仪转矩来寻找转矩平衡姿态。根据任务要求,俯仰姿态或俯仰轴CMG动量可以保持恒定:偏航姿态和横滚轴CMG动量可以保持恒定,而横摇姿态和横轴CMG动量不能保持恒定。结果,由周期性空气动力扰动引起的总体姿态和CMG动量振荡最小。还开发了状态反馈控制器,用于增益调度的计算机存储需求最少。整个闭环系统对于+或-30%的惯性矩阵变化是稳定的,并且在每个环路中具有超过+或-10 dB和45度的稳定裕度。

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