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Extremum Seeking Control: Convergence Analysis

机译:极值寻求控制:收敛性分析

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This paper summarizes our recent work on dynamical properties for a class of extremum seeking (ES) controllers that have attracted a great deal of research attention in the past decade. Their local stability properties were already investigated in [2]. We first show that semi-global practical convergence is possible if the controller parameters are carefully tuned and the objective function has a unique (global) extremum. An interesting tradeoff between the convergence rate and the size of the domain of attraction of the scheme is uncovered: the larger the domain of attraction, the slower the convergence of the algorithm. The amplitude, frequency and shape of the dither signal are important design parameters in the ES controller. In particular, we show that changing the amplitude of the dither adoptively can be used to deal with global ES in presence of local extrema. Moreover, we show that the convergence of the algorithm is proportional to the power of the dither signal. Consequently, the square-wave dither yields the fastest convergence among all dithers of the same frequency and amplitude. We consider ES of a class of bioprocesses to demonstrate our results and motivate some open research questions for multi-valued objective functions.
机译:本文总结了我们最近针对一类极值搜索(ES)控制器的动力学特性所做的工作,这些控制器在过去十年中引起了很多研究关注。在[2]中已经研究了它们的局部稳定性。我们首先表明,如果控制器参数经过仔细调整且目标函数具有唯一的(全局)极值,则半全局实用收敛是可能的。收敛速度与方案吸引域的大小之间存在有趣的折衷:吸引域越大,算法的收敛越慢。抖动信号的幅度,频率和形状是ES控制器中的重要设计参数。特别是,我们证明了过继地改变抖动的幅度可用于在存在局部极值的情况下处理全局ES。此外,我们表明算法的收敛性与抖动信号的功率成正比。因此,方波抖动会在相同频率和幅度的所有抖动之间产生最快的收敛。我们考虑一类生物过程的ES来证明我们的结果并激发一些针对多值目标函数的开放研究问题。

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