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ROBUST CONTROL OF PID CONTROLLER USING BACTERIAL FORAGING BASED OPTIMIZATION

机译:基于菌群优化的PID控制器鲁棒控制

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摘要

In this paper, design approach of PID controller with rejection function against external disturbance in motor control system is proposed using bacterial foraging based optimal algorithm. Up to the present time, PID Controller has been used to operate for AC motor drive because of its implementational advantages in practice and simple structure. However, it is not easy to achieve an optimal PID gain with no experience, since the gain of the PID controller has to be manually tuned by trial and error in the industrial system with disturbance. To design disturbance rejection tuning, disturbance rejection conditions based on H_∞ are illustrated and the performance of response based on the bacterial foraging is computed for the designed PID controller as ITSE (Integral of time weighted squared error). Hence, parameters of PID controller are selected by bacterial foraging based optimal algorithm to obtain the required response.
机译:本文提出了一种基于细菌觅食的最优算法,在电机控制系统中具有对外部干扰的抑制功能的PID控制器的设计方法。到目前为止,由于PID控制器在实践中具有实施优势和结构简单,因此已被用于交流电动机驱动器的运行。但是,没有经验就很难获得最佳的PID增益,因为PID控制器的增益必须通过带有干扰的工业系统中的试错法手动进行调整。为了设计干扰抑制调谐,说明了基于H_∞的干扰抑制条件,并针对设计的PID控制器计算了基于细菌觅食的响应性能,将其作为ITSE(时间加权平方误差的积分)。因此,通过基于细菌觅食的最佳算法选择PID控制器的参数,以获得所需的响应。

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