基于Nelder-Mead算法的分数阶控制器设计与实现

Deeksha Naithani, M. Chaturvedi, P. Juneja, Prabhat Kumar, S. Kapoor
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引用次数: 0

摘要

针对多变量工业规模聚合反应器的控制问题,提出了分数阶控制器与Nelder Mead算法相结合的思想。去中心化的概念也被应用于识别循环的配对和去中心化,以提高控制器的性能。PID控制器采用Cohen-Coon (CC)整定技术进行整定。与传统的齐格勒-尼科尔斯调谐技术相比,CC调谐技术更加灵活和合适。采用Nelder-Mead优化技术,计算分数阶pid (Fractional Order-PID)控制器参数,包括特殊参数值,这对分数阶pid控制器的微调和控制器的最优性能起着非常重要的作用。得到了仿真结果,并对其动态特性和性能指标进行了计算和分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of Fractional Order Controllers Using Nelder-Mead Algorithm
The idea of fractional order controller in combination with Nelder Mead algorithm is proposed in this paper for controlling a multivariable industrial scale polymerization reactor. The concept of decentralization is also applied to identify the pairing and decentralization of loops for better performance of the controller. PID controller is tuned using Cohen-Coon (CC) tuning technique. CC tuning technique is more flexible and suitable in comparison to conventional Ziegler-Nichols tuning technique. Using Nelder-Mead optimization technique, the Fractional Order-PID (FO-PID) controller parameters including the special parametric values are calculated which plays a very important role in tuning of FO-PID controllers finely and for optimal performance of these controllers. Simulation results are obtained and dynamic characteristics and performance indices are calculated and analyzed.
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