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Design of set-point weighting PI lambda + D-mu controller for vertical magnetic flux controller in Damavand tokamak

机译:达马万德托卡马克垂直磁通控制器设定点加权PI λ+D-mu控制器设计

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摘要

In this paper, a simple method is presented for tuning weighted PI lambda + D-mu controller parameters based on the pole placement controller of pseudo-second-order fractional systems. One of the advantages of this controller is capability of reducing the disturbance effects and improving response to input, simultaneously. In the following sections, the performance of this controller is evaluated experimentally to control the vertical magnetic flux in Damavand tokamak. For this work, at first a fractional order model is identified using output-error technique in time domain. For various practical experiments, having desired time responses for magnetic flux in Damavand tokamak, is vital. To approach this, at first the desired closed loop reference models are obtained based on generalized characteristic ratio assignment method in fractional order systems. After that, for the identified model, a set-point weighting PI lambda + D-mu controller is designed and simulated. Finally, this controller is implemented on digital signal processor control system of the plant to fast/slow control of magnetic flux. The practical results show appropriate performance of this controller. (C) 2014 AIP Publishing LLC.
机译:该文提出了一种基于伪二阶分数系统贴极控制器的加权PI lambda+D-mu控制器参数调优的简单方法。该控制器的优点之一是能够同时减少干扰影响并改善对输入的响应。在以下各节中,通过实验评估了该控制器的性能,以控制达马万托卡马克的垂直磁通量。在这项工作中,首先使用时域中的输出误差技术识别分数阶模型。对于各种实际实验,在达马万德托卡马克中拥有所需的磁通量时间响应至关重要。为此,首先基于分数阶系统中的广义特征比分配方法获得所需的闭环参考模型。然后,针对识别的模型,设计并仿真了设定点加权PI lambda + D-mu控制器。最后,该控制器在工厂的数字信号处理器控制系统上实现,以快速/慢速控制磁通量。实际结果表明,该控制器具有适当的性能。(C) 2014 年 AIP 出版有限责任公司。

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