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Adaptive event-triggered consensus control of multi-agent systems with prescribed performance and input quantization

机译:具有规定性能和输入量化的自适应事件触发的多种子体系统的共识控制

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摘要

This paper focuses on the adaptive fuzzy event-triggered consensus control problem for multi-agent systems (MAS) with prescribed performance and input quantization. Based on a prescribed performance function and an input quantization decomposition method, a new adaptive fuzzy event-triggered consensus protocol is presented. The instances in the event-triggered mechanism are triggered only when the event-triggered error exceeds a specified threshold, which can save limited communication resources. It is demonstrated that the event-triggered control protocol ensures that all signals in the MAS are semi-globally uniformly ultimately bounded. As a result, the consensus tracking errors converge to prescribed limits. Finally, simulation examples are provided to validate effectiveness of the proposed event-triggered control methods.
机译:本文重点介绍了具有规定性能和输入量化的多代理系统(MAS)的自适应模糊事件触发的共识控制问题。 基于规定的性能功能和输入量化分解方法,提出了一种新的自适应模糊事件触发的共识协议。 仅当事件触发的错误超过指定阈值时才会触发事件触发机制中的实例,这可以节省有限的通信资源。 据证明事件触发的控制协议可确保MAS中的所有信号是半全球均匀的最终限定的。 因此,共识跟踪错误会聚到规定的限制。 最后,提供了仿真示例以验证所提出的事件触发控制方法的有效性。

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