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Stochastic adaptive event-triggered control and network scheduling protocol co-design for distributed networked systems

机译:分布式联网系统的随机自适应事件触发控制与网络调度协议的协同设计

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摘要

In a distributed `networked control system' (NCS), multiple physical systems or agents are connected to their corresponding controllers through a shared packet-switched communication network. For such distributed NCS, periodic sampled controller design is unsuitable to handle packet-switched closed-loop control systems and a novel stochastic optimal adaptive event-sampled controller scheme is proposed in the application layer for each physical system or agent expressed as an uncertain linear dynamic system. Lyapunov stability analysis will be utilised to derive the event trigger condition. In addition, a network scheduling protocol is also required for such NCS. Traditional network scheduling protocols are unsuitable for such NCS since the behaviour of the physical systems is disregarded during the protocol design. Therefore in this study, a novel distributed network scheduling protocol via cross-layer approach is developed to improve the performance of distributed NCS by minimising an overall system cost function which consists of the information collected from both the event-triggered controller for each physical system in the application layer and the distributed scheduling protocol from the network layer. It will be demonstrated that the proposed co-design approach will not only allocate the network resources efficiently but also it will improve the performance of the overall distributed NCS. Simulation results are included to demonstrate the effectiveness of the proposed cross-layer co-design.
机译:在分布式“网络控制系统”(NCS)中,多个物理系统或代理通过共享的分组交换通信网络连接到其相应的控制器。对于这样的分布式NCS,周期性采样控制器设计不适合处理分组交换闭环控制系统,并且在应用层中针对表示为不确定线性动态的每个物理系统或代理,提出了一种新颖的随机最优自适应事件采样控制器方案。系统。 Lyapunov稳定性分析将用于得出事件触发条件。另外,这种NCS也需要网络调度协议。传统的网络调度协议不适用于此类NCS,因为在协议设计过程中会忽略物理系统的行为。因此,在本研究中,通过跨层方法开发了一种新颖的分布式网络调度协议,以通过最小化总体系统成本函数来提高分布式NCS的性能,该函数包括从事件触发的控制器收集的每个物理系统中的信息。应用层和来自网络层的分布式调度协议。将证明所提出的协同设计方法不仅将有效地分配网络资源,而且还将改善整个分布式NCS的性能。仿真结果包括在内,以证明所提出的跨层协同设计的有效性。

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