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Guaranteed cost control for linear periodically time-varying systems with structured uncertainty and a generalized H_2 objective

机译:具有结构不确定性和广义H_2目标的线性周期时变系统的有保证成本控制

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This paper considers the problem of finding a controller for a discrete time linear periodically time-varying system with structured parametric uncertainty which achieves robust l_2 semi-norm performance (the equivalent of robust H_2 norm performance for time-varying systems). This problem is shown to be a generalization of a guaranteed cost control problem when the structure of the uncertainty is neglected. To reduce the conservatism when the uncertainty structure is considered, static uncertainty scalings such as those used in the D-K iteration heuristic for μ-synthesis are introduced. Although the problem of simultaneously optimizing the controller and uncertainty scalings in non-convex, it is shown that it lends itself to a solution methodology conceptually similar to D-K iteration in which each step is a convex optimization. To demonstrate the effectiveness of the developed methodology, the control of a set of hard disk drives with multirate sampling characteristics and uncertain parameters is considered and a controller is designed which minimizes the worst-case l_2 semi-norm performance of the system. It is then shown that the resulting robust controller achieves worst-case l_2 semi-norm performance which is comparable to the best achievable l_2 semi-norm performance for the nominal system.
机译:本文考虑了为具有结构化参数不确定性的离散时间线性周期时变系统寻找控制器的问题,该控制器具有鲁棒的l_2半范数性能(等效于时变系统的鲁棒H_2范数性能)。当忽略不确定性的结构时,该问题显示为保证成本控制问题的一般化。为了减少在考虑不确定性结构时的保守性,引入了静态不确定性缩放比例,例如用于μ合成的D-K迭代启发法中使用的缩放比例。尽管在非凸面同时优化控制器和不确定性比例的问题,但已表明,它适合于概念类似于D-K迭代的求解方法,其中每个步骤都是凸优化。为了证明所开发方法的有效性,考虑了对一组具有多速率采样特性和不确定参数的硬盘驱动器的控制,并设计了一种控制器,该控制器可将系统在最坏情况下的l_2半规范性能降至最低。然后表明,所得到的鲁棒控制器达到了最坏情况下的l_2半模性能,与标称系统的最佳可达到的l_2半模性能相当。

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