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LFOPI controller: a fractional order PI controller based load frequency control in two area multi-source interconnected power system

机译:LFOPI控制器:一个分数阶比例积分控制器基于负荷频率控制在两个区域多源互联电力系统

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摘要

Purpose In computer application scenario, data mining task is rarely utilized in power system, as an enhanced part, this work presented data mining task in power systems, to overcome frequency deviation issues. Load frequency control (LFC) is a primary challenging problem in an interconnected multi-area power system. Design/methodology/approach This paper adopts lion algorithm (LA) for the LFC of two area multi-source interconnected power systems. The LA calculates the optimal gains of the fractional order PI (FOPI) controller and hence the proposed LA-based FOPI controller (LFOPI) is developed. Findings For the performance analysis, the proposed algorithm compared with various algorithm is given as, 80.6% lesser than the FOPI algorithm, 2.5% lesser than the GWO algorithm, 2.5% lesser than the HSA algorithm, 4.7% lesser than the BBO algorithm, 1.6% lesser than PSO algorithm and 80.6% lesser than the GA algorithm. Originality/value The LFOPI controller is the proposed controlling method, which is nothing but the FOPI controller that gets the optimal gain using the LA. This method produces better performance in terms of converging behavior, optimization of controller gain, transient profile and steady-state response.
机译:目的在计算机应用场景中,数据挖掘任务是很少用于电力系统,作为一个增强的一部分,这项工作提出了数据挖掘任务在电力系统中,要克服频率偏移的问题。控制(利物浦)是一个主要的具有挑战性的问题互联电力系统互联。设计/方法/方法本文采用狮子算法(LA)利物浦的两个区域多源电力系统互联。计算最优收益的部分订单π(FOPI)控制器,因此提出洛杉矶女FOPI控制器(LFOPI)。性能分析的结果算法而不同算法,比FOPI少80.6%算法,算法比拥有较小的2.5%,小比HSA算法少2.5%,4.7%比偏硼酸钡算法,比PSO少1.6%算法和比GA算法少80.6%。创意/价值LFOPI控制器只是提出了控制方法FOPI控制器,得到最佳的收益使用拉。性能的收敛行为,优化控制器增益,转瞬即逝概要文件和稳态响应。

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