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Performance assessment of control loop with multiple time-variant disturbances based on Multi-model Mixing Time-variant Minimum Variance control

机译:基于多模型混合时变最小方差控制的多时变扰动控制环性能评估

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The disturbance models in industry system always change with several disturbances existing simultaneously. The performance assessment based on Single Model Time-variant Minimum Variance (SMTMV) is not available to system with multiple time-variant disturbances. Since the transient deviation exists, the performance assessment based on Multi-model Switching Time-variant Minimum Variance (MSTMV) is not always available, too. In order to solve this problem, the method of performance assessment based on Multi-model Mixing Time-variant Minimum Variance (MMTMV) is proposed. First, we design SMTMV controllers for every time point according to the time-variant disturbance models. Then we obtain MMTMV controller by the multi-model mixing theory using the SMTMV controllers and the variance of the MMTMV controller's output is the benchmark to the performance assessment of control loop with multiple time-variant disturbances. Simulation results indicate that the method of MMTMV control is available.
机译:工业系统中的干扰模型总是随着同时存在的几种干扰而发生变化。基于单模型时变最小方差(SMTMV)的性能评估不适用于具有多个时变扰动的系统。由于存在瞬态偏差,因此基于多模型切换时变最小方差(MSTMV)的性能评估也不总是可用的。为了解决这个问题,提出了一种基于多模型混合时变最小方差(MMTMV)的性能评估方法。首先,我们根据时变干扰模型为每个时间点设计SMTMV控制器。然后,利用SMTMV控制器通过多模型混合理论获得了MMMTV控制器,而MMTMV控制器输出的方差是评估具有多个时变扰动的控制回路性能的基准。仿真结果表明,该方法是可行的。

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