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Robust Stochastic Design of Linear Controlled Systems for Performance Optimization

机译:用于性能优化的线性控制系统的鲁棒随机设计

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This study discusses a robust controller synthesis methodology for linear, time invariant systems, under probabilistic parameter uncertainty. Optimization of probabilistic performance robustness for 2 and multi-objective 2 measures is investigated, as well as for performance measures based on first-passage system reliability. The control optimization approaches proposed here exploit recent advances in stochastic simulation techniques. The approach is illustrated for vibration response suppression of a civil structure. The results illustrate that, for problems with probabilistic uncertainty, the explicit optimization of probabilistic performance robustness can result in markedly different optimal feedback laws, as well as enhanced performance robustness, when compared to traditional “worst-case” notions of robust optimal control.
机译:这项研究讨论了在概率参数不确定性下用于线性,时不变系统的鲁棒控制器综合方法。研究了2和多目标2测度的概率性能鲁棒性的优化,以及基于首次通过系统可靠性的性能测度。本文提出的控制优化方法利用了随机仿真技术的最新进展。说明了用于抑制土木结构的振动响应的方法。结果表明,对于概率不确定性问题,与传统的“最坏情况”鲁棒最优控制概念相比,对概率性能鲁棒性的显式优化可能会导致明显不同的最优反馈律,以及增强的性能鲁棒性。

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    Author(s):Alexandros A. TaflanidisDepartment of Civil Engineering and Geological Sciences, University of Notre Dame, Notre Dame, IN 46556Jeffrey T. ScruggsDepartment of Civil and Environmental Engineering, Duke University, Durham, NC 27708James L. BeckEngineering and Applied Science Division, California Institute of Technology, Pasadena, CA 91125;

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