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Communication-Delay-Distribution-Dependent Decentralized Control for Large-Scale Systems With IP-Based Communication Networks

机译:具有基于IP的通信网络的大型系统的通信延迟分布相关分散控制

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This paper investigates the decentralized control for a large-scale system with an IP-based communication network. The decentralized controller design specifically takes the nonuniform communication-delay-distribution characteristic of the IP-based communication network into account. First, a networked decentralized control modeling for the large-scale system is proposed. The two main points are: 1) a decentralized controller is designed, which does not depend on the full-order state of the system and 2) the nonuniform communication-delay-distribution characteristic of the IP-based communication network is fully considered in the controller design. Second, if the probability distribution of communication delay is known a priori in the design process, sufficient stability and stabilization conditions for the networked large-scale system are derived in terms of linear matrix inequalities. It shows that, the solvability of the design depends not only on the probability distribution of the communication delay but also on the network topology. Finally, the design method is applied to two pendulums coupled by a spring and a quadruple-tank process. Simulation results demonstrate the effectiveness of the proposed method.
机译:本文研究了具有基于IP的通信网络的大型系统的分散控制。分散控制器的设计特别考虑了基于IP的通信网络的通信延迟分布不均匀的特性。首先,提出了一种针对大型系统的网络分散控制模型。有两个主要要点:1)设计了一个分散的控制器,它不依赖于系统的完整状态; 2)在此基础上,充分考虑了基于IP的通信网络的不均匀通信延迟分布特性。控制器设计。其次,如果在设计过程中先验地知道了通信延迟的概率分布,则可以根据线性矩阵不等式得出网络化大型系统的足够稳定性和稳定条件。结果表明,设计的可解性不仅取决于通信延迟的概率分布,而且还取决于网络拓扑。最后,将设计方法应用于通过弹簧和四缸工艺耦合的两个摆。仿真结果证明了该方法的有效性。

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