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A performance optimization algorithm for controller reconfiguration in fault tolerant distributed model predictive control

机译:容错分布模型预测控制中控制器重构的性能优化算法

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This paper presents a performance optimization algorithm for controller reconfiguration in fault tolerant distributed model predictive control for large-scale systems. After the fault has been detected and diagnosed, several controller reconfigurations are proposed as candidate corrective actions for the fault compensation. The solution of a set of constrained DMPC optimization problems with different actuator and setpoint reconfigurations is derived by means of an original approach that exploits the information on the active constraints in the non-faulty subsystems, so as to split the global optimization problem into two optimization subproblems, which enables the on-line computation burden to be greatly reduced. Subsequently, the performances of different candidate controller reconfigurations are compared, and the better performing one is selected and then implemented to compensate the fault effects. Simulation results on a benzene alkylation process have demonstrated the efficacy of the proposed performance optimization algorithm in the fault tolerant distributed model predictive control.
机译:本文提出了一种用于大型系统的容错分布式模型预测控制中控制器重配置的性能优化算法。在检测到故障并对其进行诊断之后,提出了几种控制器重新配置的建议,作为故障补偿的候选纠正措施。通过采用原始方法来获得一组具有不同执行器和设定点重新配置的受限DMPC优化问题的解决方案,该方法利用了无故障子系统中的活动约束信息,从而将全局优化问题分为两个优化子问题,可以大大减少在线计算负担。随后,比较了不同候选控制器重新配置的性能,选择了性能更好的控制器,然后实施补偿故障效果。苯烷基化过程的仿真结果证明了所提出的性能优化算法在容错分布式模型预测控制中的有效性。

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