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Semi-adaptive control of convexly parametrized systems with application to temperature regulation of chemical reactors

机译:凸参数化系统的半自适应控制及其在化学反应器温度调节中的应用

摘要

In this paper, we are interested in the problem of adaptive control of non-linearly parametrized systems. We investigate the viability of defining a stabilizing parameter update law for the case when the plant model is convex on the uncertain parameters. We show that, when the only prior knowledge is convexity, there does not exist an adaptation law - derivable from the standard separable Lyapunov function technique of Parks - applicable for all the state space. Therefore, we propose a semi-adaptive state feedback controller where adaptation takes place only in the region of the state space where convexity can be used to reduce parameter uncertainty. In the remaining part of the state space we freeze the adaptation and switch to a robust controller. This scheme ensures semi-global stability for convexly parametrized non-linear systems with matched uncertainty. The proposed controller is then applied to the problem of temperature regulation of continuous stirred exothermic chemical reactors where reaction heat is convex in the uncertain parameters. Copyright (C) 2001 John Wiley & Sons, Ltd.
机译:在本文中,我们对非线性参数化系统的自适应控制问题感兴趣。当工厂模型在不确定参数上凸出时,我们研究了定义稳定参数更新定律的可行性。我们证明,当唯一的先验知识是凸性时,不存在适用于所有状态空间的适应律-可以从公园的标准可分李雅普诺夫夫函数技术中得出。因此,我们提出了一种半自适应状态反馈控制器,其中仅在状态空间中可以使用凸度来减少参数不确定性的区域中进行自适应。在状态空间的其余部分,我们冻结自适应并切换到健壮的控制器。该方案确保了具有匹配不确定性的凸参数化非线性系统的半全局稳定性。然后将所提出的控制器应用于连续搅拌的放热化学反应器的温度调节问题,其中反应热在不确定参数中呈凸形。版权所有(C)2001 John Wiley&Sons,Ltd.

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