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Stability of complex systems with mixed connection configurations under shared control

机译:在共享控制下具有混合连接配置的复杂系统的稳定性

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This paper presents a new stabilizing method for the control of complex systems operating in semi-automatic modes. The complex system is modeled by several spatially-coupled subsystems interconnected in parallel, serial and cycle configurations. Each subsystem is regulated by a dedicated autonomous controller that also allows for a manual control mode. An interconnection stability condition which takes the couplings between subsystems into consideration is derived from the renowned dis-sipative systems theory. Built upon this stability condition, decentralized stabilizing agents for autonomous controllers are subsequently deployed independently and segregatedly from the control algorithms. Due to this independence, human errors from man-machine interactions, that may destabilize the control systems, can be avoidable; also different types of control algorithms and controllers of subsystems are interoperable with the same stabilizing mechanism. To accomplish such tasks simultaneously, the stabilizing agents render overriding outputs for the automatic controllers, and at the same time, provide instability warning signals and manipulation guidance to the operators to successfully regulate the subsystems in the manual control mode, yet maintain the plant-wide stability. Real-time data of control inputs and plant outputs is exerted under the auspices of controller dissipativity indices and trajectories to stabilize the systems with closed-loop control and man-in-the-loop coexistence. Our main results are illustrated in simulation for a three-unit system.
机译:本文提出了一种用于控制以半自动模式运行的复杂系统的新稳定方法。复杂的系统由几个空间耦合的子系统建模,这些子系统以并行,串行和循环配置相互连接。每个子系统均由专用的自主控制器进行调节,该控制器还允许手动控制模式。考虑到子系统之间的耦合的互连稳定性条件是从著名的耗散系统理论中得出的。基于这种稳定性条件,用于自治控制器的分散式稳定剂随后会独立部署,并与控制算法隔离开来。由于这种独立性,可以避免人机交互造成的人为错误,而这可能会使控制系统不稳定。子系统的不同类型的控制算法和控制器也可以与相同的稳定机制互操作。为了同时完成这些任务,稳定剂为自动控制器提供了压倒性的输出,同时为操作员提供了不稳定警告信号和操作指导,以成功地在手动控制模式下调节子系统,同时又在整个工厂范围内进行维护。稳定。控制输入​​和工厂输出的实时数据在控制器耗散指数和轨迹的主持下发挥作用,以通过闭环控制和人在回路共存来稳定系统。在三单元系统的仿真中说明了我们的主要结果。

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