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首页> 外文期刊>IEEE Transactions on Automatic Control >Asynchronous Consensus in Continuous-Time Multi-Agent Systems With Switching Topology and Time-Varying Delays
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Asynchronous Consensus in Continuous-Time Multi-Agent Systems With Switching Topology and Time-Varying Delays

机译:具有切换拓扑和时变时滞的连续时间多智能体系统中的异步共识

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The paper studies asynchronous consensus problems of continuous-time multi-agent systems with discontinuous information transmission. The proposed consensus control strategy is implemented based on the state information of each agent's neighbors at some discrete times. The asynchrony means that each agent's update times, at which the agent adjusts its dynamics, are independent of others'. Furthermore, it is assumed that the communication topology among agents is time-dependent and the information transmission is with bounded time-varying delays. If the union of the communication topology across any time interval with some given length contains a spanning tree, the consensus problem is shown to be solvable. The analysis tool developed in this paper is based on nonnegative matrix theory and graph theory. The main contribution of this paper is to provide a valid distributed consensus algorithm that overcomes the difficulties caused by unreliable communication channels, such as intermittent information transmission, switching communication topology, and time-varying communication delays, and therefore has its obvious practical applications. Simulation examples are provided to demonstrate the effectiveness of the theoretical results.
机译:研究了具有不连续信息传递的连续时间多智能体系统的异步共识问题。所提出的共识控制策略是在某些离散时间基于每个代理的邻居的状态信息来实现的。异步意味着每个代理调整其动态的更新时间与其他代理无关。此外,假设代理之间的通信拓扑是时间相关的,并且信息传输具有时变延迟。如果在任何给定长度的任何时间间隔上的通信拓扑的并集都包含生成树,则表明共识问题可以解决。本文开发的分析工具基于非负矩阵理论和图论。本文的主要贡献是提供了一种有效的分布式共识算法,克服了不可靠的通信通道所造成的困难,如间歇性信息传输,切换通信拓扑,时变通信延迟等,因此具有明显的实际应用价值。提供了仿真例子来证明理论结果的有效性。

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