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Stability Analysis of Spatially Invariant Interconnected Systems with Networked Communication

机译:网络通信的空间不变互联系统的稳定性分析

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In this paper tractable stability conditions are presented for a system consisting of an infinite number of spatially invariant subsystems interconnected through communication networks. The networks transmit packets asynchronously and independently of each other and are equipped with scheduling protocols that determine which actuator, sensor or controller node is allowed access to the network. The overall system is modeled as an interconnection of an infinite number of spatially invariant hybrid subsystems. Based on this framework, conditions leading to a maximally allowable transmission interval (MATI) for all of the individual communication networks is derived such that uniform global asymptotic stability (UGAS) of the overall system is guaranteed. These conditions only involve the local dynamics of a single hybrid subsystem in the interconnection. In the case of linear subsystems the conditions can be stated in terms of linear matrix inequalities thereby making them numerically tractable. An illustrative example of a platoon of vehicles is used to demonstrate the newly obtained results and their applications.
机译:在本文中,提出了一个系统的易处理的稳定性条件,该系统由通过通信网络互连的无数个空间不变的子系统组成。这些网络异步且彼此独立地传输数据包,并配有调度协议,该协议确定允许哪个执行器,传感器或控制器节点访问网络。整个系统被建模为无数个空间不变的混合子系统的互连。基于该框架,得出导致所有单个通信网络的最大允许传输间隔(MATI)的条件,从而确保整个系统的统一全局渐近稳定性(UGAS)。这些条件仅涉及互连中单个混合子系统的局部动力学。在线性子系统的情况下,条件可以用线性矩阵不等式表示,从而使它们在数值上易于处理。一组车辆的说明性示例用于演示新获得的结果及其应用。

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