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首页> 外文期刊>Generation, Transmission & Distribution, IET >Design and analysis of fuzzy PID controller with derivative filter for AGC in multi-area interconnected power system
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Design and analysis of fuzzy PID controller with derivative filter for AGC in multi-area interconnected power system

机译:多区域互联电力系统中带有微分滤波器的AGC模糊PID控制器的设计与分析

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摘要

This study presents a comprehensive analytical study of a fuzzy proportional-integral-derivative (fuzzy-PID) controller with derivative filter (fuzzy-PIDF) for automatic generation control (AGC) in multi-area power system tuned by a novel hybrid local unimodal sampling-teaching learning based optimisation (LUS-TLBO) algorithm. The relevant advantage of this recommended controller is its high sensitivity to load perturbation. Initially a two area non-reheat type thermal system is considered and the gains of PIDF controller are tuned employing hybrid LUS-TLBO algorithm. The supremacy of PIDF controller is shown by comparing the results with some recently published articles. The study is further extended to design fuzzy logic based PID controller with derivative filter (fuzzy-PIDF) for AGC of the same power system employing hybrid LUS-TLBO algorithm. Supremacy of the proposed approach is shown by comparing the results with another recently published article. In addition, the work is also extended to deal with AGC issues in two area multi source hydro thermal power system using the proposed controller. Finally, it is seen that fuzzy-PIDF controller retains its supremacy over PID/PIDF/fuzzy-PID controllers. In addition to it, robustness analysis is carried out for the non-reheat two area thermal power systems by varying different parameters within the range of ±50%.
机译:这项研究提出了一种具有微分滤波器的模糊比例-积分-微分(fuzzy-PID)控制器的综合分析研究,该控制器用于通过新型混合局部单模态采样调整的多区域电力系统中的自动发电控制(AGC) -基于教学学习的优化(LUS-TLBO)算法。该推荐控制器的相关优势是其对负载扰动的高灵敏度。最初考虑的是两区非再热式热力系统,并使用混合LUS-TLBO算法对PIDF控制器的增益进行调整。通过将结果与一些最新发表的文章进行比较,显示了PIDF控制器的至高无上。该研究进一步扩展到使用混合LUS-TLBO算法为同一个电力系统的AGC设计基于微分滤波器(fuzzy-PIDF)的基于模糊逻辑的PID控制器。通过将结果与另一篇最近发表的文章进行比较,表明了所提出方法的优越性。此外,使用拟议的控制器,该工作还扩展为解决两区域多源水火电系统中的AGC问题。最后,可以看到模糊PIDF控制器保持了其优于PID / PIDF /模糊PID控制器的优势。除此之外,通过在±50%的范围内改变不同的参数,对非再热两区火力系统进行了鲁棒性分析。

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