Control of a chaotic polymerization reaction using linear and nonlinear controllers

H. Qammar, K.R. Seshadhri, R. Gomatam, A. Venkatesan
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引用次数: 5

Abstract

Chaos has been found in a number of nonlinear chemical processes including electrochemical reactions, fluidized beds, pulsed combustors, and polymerization reactions. While the control of chaos has recently a received a great deal of attention, the performance of traditional control schemes is poorly understood. Rather than implement a specific chaos control scheme, such as the well-known OGY method, we examine the feedback control of a chaotic polymerization reaction to a steady state using conventional linear and nonlinear control techniques. We show that it is possible to control a chaotic reaction system using a simple proportional controller, a discrete controller, a nonlinear model predictive controller which includes process-model mismatch. The performance of each control scheme is evaluated from the basin of successful control. While model predictive control yields a the most extensive basin and thus the best performance, in all cases the basin has a fractal structure for some values of the control parameter. The implications of a fractal basin to the robustness of the controller and the likelihood of successful control are discussed.

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用线性和非线性控制器控制一个混沌聚合反应
在许多非线性化学过程中,包括电化学反应、流化床、脉冲燃烧器和聚合反应,都发现了混沌。虽然混沌的控制近年来受到了极大的关注,但传统控制方案的性能却鲜为人知。而不是实现一个特定的混沌控制方案,如众所周知的OGY方法,我们研究了混沌聚合反应的反馈控制,使用传统的线性和非线性控制技术。我们证明了使用简单的比例控制器、离散控制器、非线性模型预测控制器(包括过程模型不匹配)来控制混沌反应系统是可能的。每个控制方案的性能从成功控制的盆地进行评价。虽然模型预测控制产生了最广泛的盆地,因此性能最好,但在所有情况下,对于某些控制参数值,盆地具有分形结构。讨论了分形盆地对控制器鲁棒性和成功控制可能性的影响。
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