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Robust and nonfragile consensus of positive multiagent systems via observer-based output-feedback protocols

机译:基于观察者的输出反馈协议的正多向系统的鲁棒和非自由达成共识

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This article investigates the consensus problem for positive multiagent systems via an observer-based dynamic output-feedback protocol. The dynamics of the agents are modeled by linear positive systems and the communication topology of the agents is expressed by an undirected connected graph. For the consensus problem, the nominal case is studied under the semidefinite programming framework while the robust and nonfragile cases are investigated under the linear programming framework. It is required that the distributed state-feedback controller and observer gains should be structured to preserve the positivity of multiagent systems. Necessary and/or sufficient conditions for the analysis of consensus are obtained by using positive systems theory and graph theory. For the nominal case, necessary and sufficient conditions for the codesign of state-feedback controller and observer of consensus are derived in terms of matrix inequalities. Sufficient conditions for the robust and nonfragile consensus designs are derived and the codesign of state-feedback controller and observer can be obtained in terms of solving a set of linear programs. Numerical simulations are provided to show the effectiveness and applicability of the theoretical results and algorithms.
机译:本文通过基于观察者的动态输出反馈协议调查了积极的多书系统的共识问题。药剂的动态由线性阳性系统建模,并且代理的通信拓扑由无向连接的图表表示。对于共识问题,在SEMIDEFINITE编程框架下研究了标称案例,而在线性规划框架下调查了强大和非自由案件。要求分布式状态反馈控制器和观察者收益应构建以保持多元系统的积极性。通过使用正系统理论和图形理论获得了分析共识的必要和/或充分条件。对于标称案件,在矩阵不等式方面,推导出国家反馈控制器和共识观察者的必要条件和充分的条件。衍生具有稳健和非自由共识设计的充分条件,并且可以在求解一组线性程序方面获得状态反馈控制器和观察者的代码。提供了数值模拟以显示理论结果和算法的有效性和适用性。

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