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A global optimization approach for non-linear sliding mode control analysis and design ?

机译:非线性滑模控制分析和设计的全局优化方法

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The design of sliding mode (SM) comprises the selection of a sliding manifold on the state space and a switching logic. The sliding manifold design is associated with the desired dynamics and closed loop specifications, whereas the switching logic is designed to drive and keep the state on the prescribe manifold. The classical design can lead to over or underestimation of the sliding domain, the closed loop robustness and the necessary control power. Here the design of SM is addressed from the global optimization approach using interval arithmetic. A solution to the analysis and synthesis problems of SM design is provided, where the necessary and sufficient conditions are fulfilled in a guaranteed way. For the analysis problem the proposed methodology allows checking sliding mode behaviour over given state domain and parameter sets. For the synthesis problem, the methodology allows designing the sliding manifold and switching logic with a given optimization criterion. The methodology is illustrated with a concluding example.
机译:滑动模式(SM)的设计包括在状态空间上选择滑动歧管和切换逻辑。滑动歧管设计与所需的动态特性和闭环规格相关,而开关逻辑旨在驱动并保持处方歧管上的状态。经典设计会导致对滑动域,闭环鲁棒性和必要的控制能力的高估或低估。在这里,SM的设计是通过使用区间算法的全局优化方法解决的。提供了一种针对SM设计的分析和综合问题的解决方案,其中以有保证的方式满足了必要和充分的条件。对于分析问题,所提出的方法允许检查给定状态域和参数集上的滑模行为。对于综合问题,该方法允许使用给定的优化标准设计滑动歧管和开关逻辑。用一个总结性的例子说明了该方法。

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