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首页> 外文期刊>Journal of Systems and Control Engineering >An integrated best-worst decomposition approach of nonlinear systems using gap metric and stability margin
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An integrated best-worst decomposition approach of nonlinear systems using gap metric and stability margin

机译:间隙度量和稳定性边缘的非线性系统的集成最糟糕的分解方法

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This article uses gap metric method to design a multi-model controller for nonlinear systems. In order to decompose the nonlinear system into a reduced nominal local models bank as much as possible, and assure the closed-loop robust stability and performance, the decomposition and designing of local controllers are integrated. To this end, robust stability, performance, and gap metric are incorporated to build a binary distance matrix that supports defining the driving and dependence powers for each local model. Then a best–worst analysis is employed considering the driving and dependence powers to find out the nominal local models. The proposed approach screens the value of all local models to choose each nominal local model. As a result, the global multi-model controller has a simple structure and avoids the computational complexity issues. To evaluate the effectiveness of the proposed method, two highly nonlinear systems, pH neutralization and continuous stirred tank reactor process, are simulated.
机译:本文使用GAP度量方法为非线性系统设计多模型控制器。为了尽可能地将非线性系统分解为减少的标称本地模型库,并确保闭环稳健稳定性和性能,集成了本地控制器的分解和设计。为此,稳健的稳定性,性能和间隙度量被融合为构建二进制距离矩阵,该矩阵支持为每个本地模型定义驱动和依赖性功率。然后,考虑到驾驶和依赖权来找出名义本地模型的最佳分析。建议的方法屏幕屏幕所有本地模型的值选择每个标称本地模型。因此,全局多模型控制器具有简单的结构,避免了计算复杂性问题。为了评价所提出的方法的有效性,模拟了两个高度非线性系统,pH中和和连续搅拌釜反应器工艺。

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