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首页> 外文期刊>AIChE Journal >Fault-Tolerant Control of Process Systems Using Communication Networks
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Fault-Tolerant Control of Process Systems Using Communication Networks

机译:使用通信网络的过程系统的容错控制

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A methodology for the design of fault-tolerant control systems for chemical plants with distributed interconnected processing units is presented.Bringing together tools from Lyapunov-based nonlinear control and hybrid systems theory,the approach is based on a hierarchical architecture that integrates lower-level feedback control of the individual units with upper-level logic-based supervisory control over communication networks.The local control system for each unit consists of a family of control configurations for each of which a stabilizing feedback controller is designed and the stability region is explicitly characterized.The actuators and sensors of each configuration are connected,via a local communication network,to a local supervisor that orchestrates switching between the constituent configurations,on the basis of the stability regions,in the event of failures.The local supervisors communicate,through a plant-wide communication network,with a plant supervisor responsible for monitoring the different units and coordinating their responses in a way that minimizes the propagation of failure effects.The communication logic is designed to ensure efficient transmission of information between units,while also respecting the inherent limitations in network resources by minimizing unnecessary network usage and accounting explicitly for the effects of possible delays due to fault-detection,control computations,network communication and actuator activation.The proposed approach provides explicit guidelines for managing the various interplays between the coupled tasks of feedback control,fault-tolerance and communication.The efficacy of the proposed approach is demonstrated through chemical process examples.
机译:提出了一种具有分布式互连处理单元的化工厂容错控制系统的设计方法。将基于Lyapunov的非线性控制和混合系统理论的工具结合在一起,该方法基于集成了低级反馈的分层体系结构通过对通信网络的基于高层逻辑的监督控制,对各个单元进行控制。每个单元的本地控制系统由一系列控制配置组成,每个控制配置均设计了稳定反馈控制器,并明确描述了稳定区域。每种配置的执行器和传感器都通过本地通信网络连接到本地监控器,该监控器在出现故障的情况下根据稳定区域在组成配置之间进行切换。本地监控器通过工厂进行通信范围内的通讯网络,由工厂主管负责监视不同的单元并协调其响应,以最大程度地减少故障影响的传播。通信逻辑旨在确保单元之间的信息有效传输,同时还通过最大程度地减少不必要的网络使用和明确地考虑到网络资源的固有局限性针对由于故障检测,控制计算,网络通信和执行器激活而可能造成的延迟的影响。该方法为管理反馈控制,容错和通信耦合任务之间的各种相互作用提供了明确的指导原则。通过化学过程实例证明了所提出的方法。

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