An Novel Optimal PID Tuning and On-Line Tuning Based on Artificial Bee Colony Algorithm

Fei Gao, Yibo Qi, Q. Yin, JiaQing Xiao
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引用次数: 24

Abstract

This paper is concerned with PID controller, which is an extremely important type of controller. However the optimal PID parameters is difficult to determined, their performance are highly sensitive to the initial guess of the solution. An artificial bee colony (ABC) algorithm approach is introduced in PID tuning and on-line tuning as a novel technique for optimum adaptive control in a non-Lyapunov way. The controller {u(k)}, parameters {k_P,k_i, k_d}'s resolving is converted to a series of multi-modal nonnegative functions' minimization, whose minimums can be optimally determined by ABC. The details of applying the proposed method are given and the experiments done show the proposed strategy is effective and robust.
一种新的基于人工蜂群算法的最优PID整定和在线整定
PID控制器是一种非常重要的控制器。然而,最优PID参数难以确定,其性能对解的初始猜测高度敏感。将人工蜂群(ABC)算法引入PID整定和在线整定中,作为一种非李雅普诺夫方式的最优自适应控制新技术。将控制器{u(k)},参数{k_P,k_i, k_d}的解析转化为一系列多模态非负函数的最小化,其最小值可由ABC最优确定。给出了该方法的应用细节,实验结果表明该方法是有效的、鲁棒的。
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