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Leaderless Consensus of Non-linear Mixed delay Multi-agent Systems with Random Packet Losses via Sampled-data Control

机译:通过采样数据控制的无线混合延迟多智能体系的非线性混合延迟多种子体系统的无限共识

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摘要

This paper inspects the consensus problem of nonlinear mixed delay multi-agent systems with random packet losses through the sampled-data control using the undirected graph without any specified leader for the other following agents. The probabilistic time varying delay is taken in the control input delay that Bernoulli distributed white sequence is engaged to formulate the random packet losses between the agents. The consensus problem can be changed over into a stabilization problem by using the Laplacian matrix which can be obtained by undirected graph. By framing a Lyapunov-Krasovskii functional with triple integral terms and implementation of the property of Kronecker product together with some well known matrix inequality techniques, a mean square consensus for mixed delay multi-agent system can be achieved. Terminally, two numerical examples are provided to illuminate the advantages of the suggested techniques.
机译:本文检查了通过采样数据控制的非线性混合延迟多种子体系统的非线性混合延迟多种代理系统的共识问题,使用了无向数据控制,无需对另一个以下代理的任何指定的领导者。 在控制输入延迟中采用概率的时间变化延迟,即Bernoulli分布式白色序列接合以在代理之间制定随机分组损耗。 通过使用可以通过无向图的拉普拉斯矩阵来改变共识问题。 通过将Lyapunov-Krasovskii功能框架与三重积分术语和克朗克产品的性质的实施以及一些公知的矩阵不等式技术,可以实现混合延迟多蛋白系统的平均平方共识。 终论情况下,提供了两个数值示例以照亮所提出的技术的优点。

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