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Impulsive Containment Control for Linear Multi-Agent Systems with Self-Feedback and Aperiodic Sampling

机译:自反馈和非周期性采样的线性多剂量系统的冲动遏制控制

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In this paper we discuss the impulsive containment control problem of continuous-time linear multi-agent systems. Firstly, an impulsive control protocol with self-feedback and aperiodic sampling is proposed, in which the coupling matrix do not have to be Laplacian. Utilizing the proposed protocol, the impulsive containment control problem for continuous-time linear multi-agent systems is equivalently transformed into the stabilization problem of some independent linear discrete-time switched systems. Then a mode-dependent switching-type Lyapunov function is constructed, some sufficient conditions are showed by using some linear matrix inequalities to achieve the containment control purpose. In addition, based on a linear matrix inequality, the controller gain matrix can be designed to solve the containment control problem. In obtained results, the self-feedback gain, the size and the switching frequency of the sampling intervals can play all important roles. Finally, two simulation examples are employed to validate the effectiveness of the theoretical results.
机译:本文讨论了连续时间线性多剂系统的脉冲遏制控制问题。首先,提出了一种具有自反馈和非周期性采样的脉冲控制方案,其中耦合矩阵不必是拉普拉斯。利用所提出的协议,对连续时间线性多代理系统的脉冲遏制控制问题等效地转变为一些独立线性离散时间交换系统的稳定问题。然后构建了一种依赖于模式的开关型Lyapunov功能,通过使用一些线性矩阵不等式来展示一些充分的条件以实现容纳控制目的。另外,基于线性矩阵不等式,控制器增益矩阵可以设计为解决容纳控制问题。在获得的结果中,采样间隔的自助反馈增益,大小和切换频率可以发挥所有重要角色。最后,采用两个模拟实施例来验证理论结果的有效性。

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