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Optimal Design of Robust Control for Fuzzy Mechanical Systems: Performance-Based Leakage and Confidence-Index Measure

机译:模糊机械系统鲁棒控制的优化设计:基于性能的泄漏和置信度测度

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The optimal design problem of adaptive robust control for fuzzy mechanical systems with uncertainty is investigated in this paper. The uncertainty that may be nonlinear and (possibly fast) time-varying is assumed to be bounded, and the knowledge of the bound only lies within a prescribed fuzzy set. Based on the Udwadia and Kalaba's approach, an adaptive robust controller, which is deterministic and is not the usual if-then rules-based is proposed to render the system to follow a class of prespecified constraints approximately. The adaptive law is of leakage type that can adjust the magnitude of the adaptive parameter based on the nonlinear performance-dependent gain. The resulting controlled system is uniformly bounded and uniformly ultimately bounded, which is proved via the Lyapunov minimax approach. Furthermore, we propose a novel concept: fuzzy confidence to measure the expectation value of a fuzzy number. Then, a fuzzy-based system performance index that includes the expectation value of the uniform ultimate boundedness (the average fuzzy performance) and the control cost is formulated. The optimal design problem associated with the control can then be solved by minimizing the performance index. As a result, the performance of the fuzzy mechanical system is both deterministically guaranteed and fuzzily optimized under this control.
机译:研究了不确定性模糊机械系统的自适应鲁棒控制的最优设计问题。可能是非线性且(可能是快速的)时变的不确定性被认为是有界的,并且界的知识仅位于规定的模糊集中。基于Udwadia和Kalaba的方法,提出了一种确定性而不是通常的“ if-then”基于规则的自适应鲁棒控制器,以使系统近似遵循一类预先指定的约束。自适应律是泄漏型的,可以基于非线性性能相关增益来调整自适应参数的大小。最终的受控系统是均匀有界的,并且最终最终有界是有界的,这通过Lyapunov minimax方法得以证明。此外,我们提出了一个新颖的概念:模糊置信度以测量模糊数的期望值。然后,制定了一个基于模糊的系统性能指标,其中包括均匀极限有界度的期望值(平均模糊性能)和控制成本。然后可以通过最小化性能指标来解决与控制相关的最佳设计问题。结果,确定性地保证了模糊机械系统的性能,并且在该控制下模糊地优化了模糊机械系统的性能。

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