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Static-dynamic hybrid communication scheduling and control co-design for networked control systems

机译:网络控制系统的静态动态混合通信调度和控制共同设计

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In this paper, the static-dynamic hybrid communication scheduling and control co-design is proposed for the networked control systems (NCSs) to solve the capacity limitation of the wireless communication network. The analytical most regular binary sequences (MRBSs) are used as the communication scheduling function for NCSs. When the communication conflicts yielded in the binary sequence MRBSs, a dynamic scheduling strategy is proposed to on-line reallocate the medium access status for each plant. Under such static-dynamic hybrid scheduling policy, plants in NCSs are described as the non-uniform sampled-control systems, whose controller have a group of controller gains and switch according to the sampling interval yielded by the binary sequence. A useful communication scheduling and control co-design framework is proposed for the NCSs to simultaneously decide the controller gains and the parameters used to generate the communication sequences MRBS. Numerical example and realistic example are respectively given to demonstrate the effectiveness of the proposed co-design method. (C) 2017 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了静态动态混合通信调度和控制共同设计,用于网络控制系统(NCS)来解决无线通信网络的容量限制。分析大多数常规二进制序列(MRBS)用作NCSS的通信调度功能。当在二进制序列MRBS中产生的通信冲突时,将动态调度策略提出到在线重新分配每个工厂的媒体访问状态。在这种静态动态混合调度策略下,NCS中的植物被描述为非均匀采样控制系统,其控制器具有根据二进制序列产生的采样间隔的一组控制器增益和切换。提出了一种用于NCS的有用的通信调度和控制共设计框架,同时决定控制器增益和用于生成通信序列MRB的参数。分别给出了数值示例和现实例子,以证明所提出的共设计方法的有效性。 (c)2017 ISA。 elsevier有限公司出版。保留所有权利。

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