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Design of robust PI control systems based on sensitivity analysis and genetic algorithms

机译:基于灵敏度分析和遗传算法的鲁棒PI控制系统设计

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摘要

Sensitivity analysis and a genetic algorithm are used in the proportional-integral controller design. A systematic procedure is proposed to improve the results of the proportional-integral controller sensitivity analyses reported in the literature, and this procedure ensures a certain gain margin and phase margin in the proportional-integral control systems. The stability boundary of the proportional-integral control systems in a parameter space is obtained by the Tan method. The genetic algorithm is also used to meet the specifications of the integral absolute error, integral time-weighted absolute error, integral square error and integral time-weighted square error. Therefore, the genetic locus can be obtained in a parameter space. The method is also used to design a proportional-integral controller for Kharitonov plants and for process control, including time delay. Computer simulations show the effectiveness of the proposed method in this article. The proposed method is also applied in a robot function, an uncertain coefficient system of position control for a motor system and a boiler steam drum process control system.
机译:比例积分控制器设计使用敏感性分析和遗传算法。提出了一种系统的程序来改善文献中报告的比例积分控制器敏感性分析的结果,并且该过程确保了比例整体控制系统中的一定的增益裕度和相位余量。通过TAN方法获得参数空间中比例积分控制系统的稳定性边界。遗传算法还用于满足积分绝对误差,积分时间加权绝对误差,积分方误差和积分时间加权方误差的规格。因此,遗传基因座可以在参数空间中获得。该方法还用于为Kharitonov工厂和过程控制设计比例积分控制器,包括时间延迟。计算机模拟显示了本文中提出的方法的有效性。该方法还应用于机器人功能,是电动机系统的不确定系数系统和锅炉蒸汽鼓过程控制系统。

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