Dynamic event-triggered tolerant containment control protocol for discrete multiagent systems based on finite index policy iteration algorithm.

Shuya Yan, Xiaocong Li, Huaming Qian, Abdullah Al Mamun
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Abstract

For tolerant containment control of multi-agent systems, considering the challenges in modeling and the impact of actuator faults on system security and reliability, a finite index dynamic event-triggered policy iteration algorithm is proposed. This algorithm only requires input and output data, without relying on system models, and simultaneously considers the faults and energy consumption issues to improve the system reliability and save energy consumption. The conditions are provided to demonstrate the convergence and optimality of the algorithm, including a convergence speed, that is, the number of iterations required for convergence is finite. For the convenience of practical implementation, an actor-critic structure is adopted and an actor network weight tuning law with actuator fault factors is designed to more accurately approximate the control protocol in policy iteration algorithm. In addition, an event-triggered mechanism is employed in saving computational resources. Finally, simulation results verify the efficiency of the designed algorithm.

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基于有限索引策略迭代算法的离散多智能体系统动态事件触发容错控制协议。
针对多智能体系统的容错控制问题,考虑到建模的困难和执行器故障对系统安全性和可靠性的影响,提出了一种有限索引动态事件触发策略迭代算法。该算法只需要输入和输出数据,不依赖系统模型,同时考虑故障和能耗问题,提高系统可靠性,节约能耗。给出了证明算法收敛性和最优性的条件,包括收敛速度,即收敛所需的迭代次数是有限的。为了便于实际实现,采用了行为者-批评家结构,设计了包含执行器故障因素的行为者网络权值调整律,使策略迭代算法更精确地逼近控制协议。此外,还采用事件触发机制来节省计算资源。最后,仿真结果验证了所设计算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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