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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Pareto optimal robust design of fractional-order PID controllers for systems with probabilistic uncertainties
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Pareto optimal robust design of fractional-order PID controllers for systems with probabilistic uncertainties

机译:概率不确定系统的分数阶PID控制器的Pareto最优鲁棒设计

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摘要

In this paper, a multi-objective optimization approach is used for Pareto optimum design of robust integer-order and fractional-order PID controllers for both integer-order and fractional-order plants with parametric uncertainties. The aim of this paper is to compare the performances of those optimally-designed controllers dealing with parametric uncertainties of both integer-order and fractional-order plants. In this way, four combinations of plants and controllers have been considered in which five conflicting objective functions in both time and frequency domains are used in the Pareto design of both integer-order and fractional-order PID controllers. The results clearly show that effective trade-off design points can be compromisingly explored among the optimal robust integer-order and fractional-order PID controllers obtained using the methodology of this work. Furthermore, the superior robust stability and robust performance of the fractional-order PID controllers will be demonstrated in comparison with those of the integer-order PID controllers.
机译:本文采用多目标优化方法对具有参数不确定性的整数阶和分数阶设备进行鲁棒整数阶和分数阶PID控制器的Pareto优化设计。本文的目的是比较那些针对整数阶和分数阶电厂的参数不确定性进行优化设计的控制器的性能。这样,已经考虑了工厂和控制器的四种组合,其中在整数阶和分数阶PID控制器的Pareto设计中,在时域和频域中使用了五个相互冲突的目标函数。结果清楚地表明,在使用本工作的方法获得的最佳鲁棒整数阶和分数阶PID控制器之间,可以折衷探索有效的折衷设计点。此外,与整数阶PID控制器相比,将展示分数阶PID控制器的卓越鲁棒稳定性和鲁棒性能。

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