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A Robust Finite-time Fault-tolerant Formation Control of Stochastic Multi-agent Systems in the Mean-Square Sense

机译:均方意义下随机多智能体系统的鲁棒有限时间容错编队控制

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This study discusses a robust distributed finite-time formation control of the stochastic Lipchitz multi-agent systems within the actuator fault. Furthermore, the orientation of formation is often adjusted in step with the leader's orientation. The agents are modeled as stochastic nonlinear systems either thanks to their intrinsic behavior or working in a very random vibrating environment. Additionally, biased and effectiveness faults are considered. To cater to these, employing a distributed sliding-mode approach and the infinitesimal operation, a robust finite-time fault-tolerant controller is presented in mean-square sense. Finally, a multi-aircraft model under stochastic wind is used to validate the effectiveness of the offered control law.
机译:本研究讨论了执行器故障内随机Lipchitz多智能体系统的鲁棒分布式有限时间形成控制。此外,编队的方向常常与领导者的方向同步调整。由于代理的固有行为或在非常随机的振动环境中工作,这些代理被建模为随机非线性系统。此外,还考虑了有偏见和有效性的错误。为了迎合这些需求,采用分布式滑模方法和无穷小运算,以均方意义提出了一种鲁棒的有限时间容错控制器。最后,使用随机风下的多飞机模型来验证所提供控制律的有效性。

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