一种自适应控制混合槽实验的全局稳定性分析

R. Adomaitis, C. Frouzakis, I. Kevrekidis
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引用次数: 5

摘要

研制了一种混合槽自适应控制器并进行了实验实现,研究了植物/参考模型不匹配对混合槽自适应控制器的影响。用数值分岔分析技术预测了理想工作点局部稳定而非全局稳定的失配范围,并进行了实验验证。在多重稳定性的情况下,通过计算渐近逼近每个吸引子的初始条件集的边界来量化使设定点不稳定的有限扰动。人们发现这些吸引盆地有时由断裂和扭曲的构造组成。这是由控制系统的非唯一逆时动力学引起的,可以通过考虑沿盆地边界的逆时图的行为来研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Global Stability Analysis of an Adaptively-Controlled Mixing Tank Experiment
An adaptive controller for a mixing tank is developed and experimentally implemented, and the effects of plant/reference-model mismatch are studied. The ranges of mismatch where the desired operating point is locally, but not globally, stable are predicted with numerical bifurcation analysis techniques and verified experimentally. In the cases of multistability, finite perturbations which destabilize the set point are quantified by computing the boundaries separating the sets of initial conditions which asymptotically approach each attractor. These basins of attraction are found to sometimes consist of disconnected and distorted structures. This results from the nonunique inverse-time dynamics of the controlled system and can be studied by considering the behavior of the reverse-time map along the basin boundaries.
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