一种容错即插即用控制器的实验评估

S. Bodenburg, Simon Niemann, J. Lunze
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引用次数: 19

摘要

网络控制系统使用网络连接来交换数据和信号。在即插即用控制中,控制算法和系统模型在共享网络上的通信涉及到在工厂结构或控制目标发生变化后自动调整控制律的意图。一个应用场景是在容错控制中研究的传感器或执行器的故障。本文从即插即用控制的角度对这种情况进行了研究。诊断任务和重新配置任务被分离并分配给预定的计算单元:一个分配在工厂访问工厂信号的板载单元和一个远程板载单元,涉及昂贵的计算。板载诊断单元在运行时检测和识别故障,并通过共享网络将故障设备的模型传输给板载重构单元。利用虚拟传感器和虚拟执行器的重构策略,自动设计重构后的控制器,并将其传递给控制站,取代原有的控制算法。在整个过程中,不需要人工干预。本文的主要贡献是将诊断方法和重构方法相结合以执行完全自动化的序列,实现了这一概念,并通过热流体过程的实验进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental evaluation of a fault-tolerant plug-and-play controller
Networked control systems use the network connection to exchange data and signals. In plug-and-play control the communication of control algorithms and system models over a shared network is concerned with the intention to adjust control laws automatically after the occurrence of changes in the plant structure or in the control objectives. An application scenario is the break down of a sensor or an actuator as studied in fault-tolerant control. This paper investigates such a situation in the sense of plug-and-play control. The diagnostic task and reconfiguration task are separated and assigned to predestined computational units: an onboard unit allocated at the plant with access to the plant signal and a remote off-board unit concerning the expensive computation. The onboard diagnostic unit detects and identifies the failure at runtime and transmits the model of the faulty plant to the offboard reconfiguration unit over a shared network. Using the reconfiguration strategy of the virtual sensor and virtual actuator the reconfigured controller is automatically designed and transmitted to the control station to replace the original control algorithm. In the whole sequence no human interaction is necessary. The main contributions of this paper are the combination of a diagnosis method and a reconfiguration method to perform a completely automated sequence, the implementation of this concept and the evaluation by experiments on a thermal fluid process.
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