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Extremum seeking based on a Hammerstein-Wiener representation

机译:基于Hammerstein-Wiener代表的极值寻求

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This study is concerned with the development of an extremum seeking (ES) strategy based on recursive least square (RLS) for on-line estimation, and a regression model in the form of a Hammerstein-Wiener model. RLS usually provides a faster convergence than the classical bank of filter estimators, and the consideration of process dynamics allows to take account for the phase-shift and attenuation occurring when increasing the frequency of the dither signal. The resulting ES scheme achieves very significant improvement in convergence speed, as illustrated with a numerical example, and a more realistic application to micro-algae cultures in a photo-bioreactor in simulation.
机译:本研究涉及基于递归最小二乘(RLS)的极值寻求策略的发展,以及Hammersein-Wiener模型形式的回归模型。 RLS通常提供比经典滤波器估计器的速度更快的收敛,并且考虑过程动态允许考虑在增加抖动信号的频率时发生的相移和衰减。所得的ES方案实现了收敛速度的非常显着的改善,如在模拟中的光生物反应器中的微藻培养物中更现实地应用于微藻培养物。

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