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Event-triggered coordinated attitude method for chip satellite cluster

机译:事件触发的协调性姿态的芯片卫星集群方法

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摘要

Event-triggered coordinated attitude control problem for chip satellite cluster was investigated in this paper. Considering the constraints of computation, measurement and communication on chip satellites, adaptive attitude tracking controller based on event-triggered strategy was proposed for chip satellite cluster with leader-follower architecture. Triggering function with state tracking error was designed to adjust update period of controller, event was triggered and controller was updated once triggering function value satisfied the condition, while controller in non-triggering time used state information of triggering time. As the state of cluster system gradually tended to be stable, triggering frequency was reduced, which effectively reduced update frequency of controller and reduced resource on board. Cluster system was proved to be globally asymptotical convergence by Lyapunov stability theory. Simulation results showed that the proposed event-triggered adaptive attitude tracking controller could reduce control execution frequency, meet the constraints of resource and ability of chip satellites, as well as ensure control performance of cluster system. The influence of control gain coefficients and triggering parameters on control performance of cluster system were further analyzed, and criterion for parameters design was provided.
机译:研究了芯片卫星群的事件触发协调姿态控制问题。考虑到芯片卫星的计算,测量和通信的约束,针对具有领导者跟随架构的芯片卫星集群,提出了一种基于事件触发策略的自适应姿态跟踪控制器。设计了具有状态跟踪错误的触发功能,以调整控制器的更新周期,一旦触发功能值满足条件,就会触发事件并更新控制器,而在非触发时间内,控制器会使用触发时间的状态信息。随着集群系统状态逐渐趋于稳定,触发频率降低,有效降低了控制器更新频率,减少了机载资源。 Lyapunov稳定性理论证明了簇系统是全局渐近收敛的。仿真结果表明,该事件触发的自适应姿态跟踪控制器可以降低控制执行频率,满足芯片卫星资源和能力的约束,并能保证集群系统的控制性能。进一步分析了控制增益系数和触发参数对集群系统控制性能的影响,为参数设计提供了依据。

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