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Statistical approach to robust-performance control synthesis for systems with uncertain physical parameters

机译:具有不确定物理参数的系统的鲁棒性能控制综合统计方法

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Introduces a design approach integrating robust control and quality control to synthesize robust-performance controllers for systems with uncertain physical parameters. We exploit classic statistics and related inference theories for an experimental design that uses orthogonal arrays to directly achieve time domain specifications, which is difficult for approaches based on frequency-domain synthesis such as norm-bounded optimization schemes. In addition, by exploiting analysis of variance (ANOVA), the interrelation between specifications and each design parameter can be studied quantitatively. In comparison with existing optimization schemes, our proposed scheme requires less numerical computations without the trouble of initial guess, and without differentiation operation. Systematic procedures for this quality-oriented control design are outlined in this paper.
机译:引入了一种集成了鲁棒控制和质量控制的设计方法,以为物理参数不确定的系统合成鲁棒性能控制器。我们利用经典统计数据和相关的推理理论进行实验设计,该实验设计使用正交数组直接实现时域规范,这对于基于频域综合的方法(例如范数有界的优化方案)来说是困难的。此外,通过利用方差分析(ANOVA),可以定量研究规格与每个设计参数之间的相互关系。与现有的优化方案相比,我们提出的方案需要较少的数值计算,而没有初始猜测的麻烦,并且不需要微分运算。本文概述了这种以质量为导向的控制设计的系统程序。

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