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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Identification and tuning fractional order proportional integral controllers for time delayed systems with a fractional pole
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Identification and tuning fractional order proportional integral controllers for time delayed systems with a fractional pole

机译:具有分数极点的时滞系统的辨识和调整分数阶比例积分控制器

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摘要

First order plus time delay model is widely used to model systems with S-shaped reaction curve. Its generalized form is the model with a single fractional pole replacing the integer order pole, which is believed to better characterize the reaction curve. In this paper, using time delayed system model with a fractional pole as the starting point, fractional order controllers design for this class of fractional order systems is investigated. Integer order PID and fractional order PI and [PI] controllers are designed and compared for these class of systems. The simulation comparison between PID controller and fractional order PI and [PI] controllers show the advantages of the properly designed fractional order controllers. Experimental results on a heat flow platform are presented to validate the proposed design method in this paper.
机译:一阶加时滞模型被广泛用于建模具有S形反应曲线的系统。它的广义形式是用单个分数极代替整数阶极的模型,据信该模型可以更好地表征反应曲线。本文以分数极点为时延的系统模型为起点,研究了这类分数阶系统的分数阶控制器设计。针对此类系统设计并比较了整数阶PID和分数阶PI和[PI]控制器。 PID控制器与分数阶PI和[PI]控制器之间的仿真比较显示了正确设计分数阶控制器的优势。提出了在热流平台上的实验结果,以验证本文提出的设计方法。

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