System reconfiguration of large-scale control systems using back-up actuators

Carlos Trapiello, V. Puig, G. Cembraño
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Abstract

The intrinsic redundancy of large-scale control systems allows to differentiate between the nominal system configuration, where the dynamics of the plant are controlled through a specific subset of actuators, and the possible configurations that arise from the combination of all the existing actuators (nominal plus back-up ones). After the occurrence of an unexpected event (component fault, isolation of a specific area due to security concerns, etc), some of the back-up system actuators can be used in order to guarantee that the system performance will remain within some admissible margins. Thus, given a scenario that causes a non-admissible system operation with the nominal configuration, the possibility to use back-up actuators in order to improve the system performance expands the traditional fault tolerant control scenario defining a new problem. Accordingly, this work is devoted to the introduction of the problem which is solved by formulating the actuator selection as a mixed-integer programming optimization. A water distribution network is used with the aim to illustrate the new problem implications as well as to demonstrate the validity of the proposed solution.
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使用备用执行器的大型控制系统的系统重构
大型控制系统的内在冗余性允许区分标称系统配置,其中工厂的动力学是通过执行器的特定子集来控制的,以及由所有现有执行器(标称和备用执行器)组合产生的可能配置。在发生意外事件(组件故障,由于安全考虑而隔离特定区域等)后,可以使用一些备用系统执行器,以保证系统性能保持在一些可接受的范围内。因此,给定一个场景,导致一个不允许的系统运行与标称配置,使用备用执行器的可能性,以提高系统性能扩展了传统的容错控制场景定义一个新的问题。因此,本工作致力于介绍将执行机构选择表述为混合整数规划优化来解决的问题。以一个配水网络为例,旨在说明新问题的含义,并证明所提出解决方案的有效性。
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