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On a quantitative theory of robust adaptive control: an interval plant approach

机译:关于鲁棒自适应控制的定量理论:一种区间工厂方法

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This paper considers a robust direct-model reference adaptive control scheme, where the components of the estimated controller parameter vector are constrained to vary in certain prespecified intervals. This interval constraint facilitates the quantitative analysis of the robustness of the closed-loop adaptive control system. Extending existing results from the area of robust parametric stability, a tractable procedure is developed for verifying a condition which guarantees the boundedness of all the closed-loop signals. The robustness verification using this procedure involves the calculation of worst-case "shifted" H/sub /spl infin// norms over certain extremal one-parameter families. This makes the condition easily verifiable, whereas otherwise one is faced with the formidable task of determining the worst-case norms over higher-dimensional compact convex sets in the plant and controller parameter spaces. A simple example is used in the paper to illustrate the theoretical development.
机译:本文考虑了一种鲁棒的直接模型参考自适应控制方案,其中估计的控制器参数矢量的分量被约束为在某些预定间隔内变化。该间隔约束有利于定量分析闭环自适应控制系统的鲁棒性。从稳健的参数稳定性领域扩展了现有结果,开发了一种易于处理的程序来验证条件,该条件保证了所有闭环信号的有界性。使用此过程的稳健性验证涉及某些极端一参数族上最坏情况的“移位” H / sub / spl infin //范数的计算。这使得该条件易于验证,反之则面临着一项艰巨的任务,即确定工厂和控制器参数空间中高维紧凸集上的最坏情况范数。本文使用一个简单的例子来说明理论发展。

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