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Resource aware quasi-decentralized control of networked process systems over wireless sensor networks

机译:通过无线传感器网络对网络过程系统进行资源感知的准分散控制

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This paper develops an integrated model-based networked control and scheduling framework for plants with interconnected units and distributed control systems that exchange information using a resource-constrained wireless sensor network (WSN). The framework aims to enforce closed-loop stability while simultaneously minimizing the rate at which each node in the WSN must collect and transmit measurements. Initially, the exchange of information between the local control systems is reduced by embedding, within each control system, dynamic models that provide forecasts of the evolution of the plant units when measurements are not transmitted through the WSN, and updating the state of each model when communication is re-established at discrete time instances. To further reduce WSN utilization, only a subset of the deployed sensor suites are allowed to transmit their data at any given time to provide updates to their target models according to a certain scheduling strategy. By formulating the networked closed-loop plant as a combined discrete-continuous system, explicit characterizations of both the stability and performance properties of the networked closed-loop system under state and output feedback control are obtained in terms of the communication rate, the sensor transmission schedule, the accuracy of the models, as well as the controller and observer design parameters. The results are illustrated using a chemical plant example where it is shown that by judicious management of the interplays between the control, communication and scheduling design parameters, it is possible to enhance the savings in WSN resource utilization beyond what is possible with concurrent transmission configurations.
机译:本文为具有互连单元和分布式控制系统的工厂开发了一个基于模型的集成网络控制和调度框架,该分布式控制系统使用资源受限的无线传感器网络(WSN)交换信息。该框架旨在增强闭环稳定性,同时最小化WSN中每个节点必须收集和传输测量值的速率。最初,通过在每个控制系统中嵌入动态模型来减少本地控制系统之间的信息交换,该动态模型在不通过WSN传输测量值时提供对工厂单元的演变的预测,并在更新时将更新每个模型的状态。在离散的时间点重新建立通信。为了进一步降低WSN利用率,仅允许已部署的传感器套件的子集在任何给定时间传输其数据,以根据某种调度策略对其目标模型进行更新。通过将网络闭环设备公式化为组合的离散连续系统,可以根据通信速率,传感器传输情况,获得状态和输出反馈控制下网络闭环系统的稳定性和性能特性的明确表征。进度,模型的准确性以及控制器和观察者的设计参数。使用化工厂示例说明了结果,其中显示了通过明智地控制控制,通信和调度设计参数之间的相互作用,可以提高WSN资源利用率的节省,超出并发传输配置所能达到的范围。

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