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Reliability-based performance objectives and probabilistic robustness in structural control applications

机译:结构控制应用中基于可靠性的性能目标和概率鲁棒性

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摘要

A reliability-based structural control design approach is presented that optimizes a control system explicitly to minimize the probability of structural failure. Failure is interpreted as the system's state trajectory exiting a safe region within a given time duration. This safe region is bounded by hyperplanes in the system state space, each of them corresponding to an important response quantity. An efficient approximation is discussed for the analytical evaluation of this probability, and for its optimization through feedback control. This analytical approximation facilitates theoretical discussions regarding the characteristics of reliability-optimal controllers. Versions of the controller design are described for the case using a nominal model of the system, as well as for the case with uncertain model parameters. For the latter case, knowledge about the relative plausibility of the different possible values of the uncertain parameters is quantified through the use of probability distributions on the uncertain parameter space. The influence of the excitation time duration on feedback control design is discussed and a probabilistic treatment of this time duration is suggested. The relationship to H-2 (i.e., minimum variance) controller synthesis is also examined.
机译:提出了一种基于可靠性的结构控制设计方法,该方法可明确优化控制系统,以最大程度地降低结构故障的可能性。故障被解释为系统的状态轨迹在给定的持续时间内离开安全区域。该安全区域在系统状态空间中由超平面界定,每个超平面对应一个重要的响应量。讨论了一种有效的近似方法,用于对该概率进行分析评估,并通过反馈控制对其进行优化。这种分析近似有助于进行有关可靠性最佳控制器特性的理论讨论。针对使用系统标称模型的情况以及具有不确定模型参数的情况描述了控制器设计的版本。对于后一种情况,通过使用不确定参数空间上的概率分布来量化有关不确定参数的不同可能值的相对合理性的知识。讨论了激励持续时间对反馈控制设计的影响,并建议对该持续时间进行概率处理。还检查了与H-2(即最小方差)控制器综合的关系。

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