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Design of a class of fractional controllers from frequency specifications with guaranteed time domain behavior

机译:从频率规范设计一类分数控制器,并保证时域行为

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This paper tackles the problem of tuning a class of fractional controllers by using frequency specifications. These tuning strategies exhibit the advantage of allowing the design of robustness features in the closed-loop control system. Nowadays, relationships between time and frequency domain specifications are given by complicated formulas in the case of integer controllers, which become even more complicated if fractional controllers are used. The proposed strategy consists in finding the family of fractional controllers (in function of the fractional integrator) that makes the closed-loop system have the same time domain specifications: overshoot and settling time. Such family of controllers is obtained by minimizing a function based on these time domain specifications. Our method has been particularized to first order plants, controlled by PI" regulators, although the results can be easily extended to higher order plants and other fractional controllers. The obtained results provide simple expressions for tuning these controllers.
机译:本文解决了通过使用频率规范来调整一类分数控制器的问题。这些调整策略的优势在于可以在闭环控制系统中设计鲁棒性功能。如今,在整数控制器的情况下,时域和频域规范之间的关系由复杂的公式给出,如果使用分数控制器,则变得更加复杂。所提出的策略在于找到分数控制器家族(作为分数积分器的功能),该系列使闭环系统具有相同的时域规范:过冲和建立时间。通过基于这些时域规范最小化功能,可以获得此类控制器系列。尽管可以轻松地将结果扩展到高阶设备和其他分数控制器,但我们的方法已专门针对由PI“调节器控制的一阶设备。获得的结果为调整这些控制器提供了简单的表达式。

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