航天器
控制理论(社会学)
角速度
计算机科学
量化(信号处理)
姿态控制
有界函数
扭矩
控制器(灌溉)
卫星
控制(管理)
信号(编程语言)
工程类
控制工程
数学
物理
航空航天工程
算法
人工智能
热力学
程序设计语言
数学分析
生物
量子力学
农学
作者
Mingyue Shi,Baolin Wu,Chuang Xu
标识
DOI:10.1177/09544100231153318
摘要
This article addresses the problem of predefined-time attitude takeover control (PTATC) of spacecraft by using cellular satellites with limited inter-satellite communication capacity. To reduce the communication burden in the wireless networks, a dynamic uniform quantizer is employed to quantize the attitude signals and angular velocity signals measured by the sensor cellular satellites (SCSs). Besides, a static uniform quantizer is used to quantize the control torque signal generated by the controller cellular satellite (CCS). A predefined-time quantized attitude control law is designed, which can compensate for the quantization error. The proposed PTATC scheme can reduce the communication burden among the cellular satellites and achieve the desired angular velocity and attitude of the combined spacecraft within the predefined-time on the premise of ensuring the system performance. Under the proposed control law, all the signals in the closed-loop system can converge into a bounded region within a predefined-time. Finally, numerical simulations are presented to illustrate the effectiveness of the proposed scheme.
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