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FIXED-ORDER H-INFINITY CONTROL FOR INTERCONNECTED SYSTEMS USING DELAY DIFFERENTIAL ALGEBRAIC EQUATIONS

机译:时滞微分代数方程对互联系统的不定阶H-无限控制

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摘要

We analyze and design H-infinity controllers for general time-delay systems with time-delays in systems’ state, inputs, and outputs. We allow the designer to choose the order of the controller and to introduce constant time-delays into the controller. The closed-loop system of the plant and the controller is modeled by a system of delay differential algebraic equations (DDAEs). The advantage of the DDAE modeling framework is that any interconnection of systems and controllers prone to various types of delays can be dealt with in a systematic way, without using any elimination technique. We present a predictor-corrector algorithm for the H-infinity norm computation of systems described by DDAEs. Instrumental to this we analyze the properties of the H-infinity norm. In particular, we illustrate that it may be sensitive with respect to arbitrarily small delay perturbations. Due to this sensitivity, we introduce the strong H-infinity norm, which explicitly takes into account small delay perturbations, inevitable in any practical control application. We present a numerical algorithm to compute the strong H-infinity norm for DDAEs. Using this algorithm and the computation of the gradient of the strong H-infinity norm with respect to the controller parameters, we minimize the strong H-infinity norm of the closed-loop system based on nonsmooth, nonconvex optimization methods. By this approach, we tune the controller parameters and design H-infinity controllers with a prescribed order or structure.
机译:我们分析和设计用于一般时滞系统的H-infinity控制器,其中系统状态,输入和输出都有时延。我们允许设计人员选择控制器的顺序,并将恒定的时间延迟引入控制器。工厂和控制器的闭环系统由延迟微分代数方程(DDAE)系统建模。 DDAE建模框架的优点在于,可以采用系统的方式处理易于发生各种类型的延迟的系统和控制器的任何互连,而无需使用任何消除技术。我们为DDAE描述的系统的H无限范数计算提供了一种预测校正算法。为此,我们分析了H无限范数的性质。特别地,我们说明了它对于任意小的延迟扰动可能是敏感的。由于这种敏感性,我们引入了强H无穷范数,该范数明确考虑了小延迟扰动,这在任何实际控制应用中都是不可避免的。我们提出了一种数值算法来计算DDAE的强H无穷范数。使用该算法以及针对控制器参数的强H-无穷范数的梯度计算,我们基于非光滑,非凸优化方法将闭环系统的强H-无穷范数最小化。通过这种方法,我们可以调整控制器参数,并以规定的顺序或结构设计H-infinity控制器。

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