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Grey Wolf Optimizer Algorithm Based Fuzzy PID Controller for AGC of Multi-area Power System with TCPS

机译:基于灰狼优化器算法的TCPS多区域电力系统AGC模糊PID控制器

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In this paper, a meta-heuristic optimization algorithm has been applied to interconnected Hydro-thermal power system for automatic generation control (AGC). The optimal gains of the fuzzy based proportional, integral and derivative (PID) controllers are obtained by employing the proposed Grey Wolf Optimizer (GWO) algorithm. The generation rate constraint of 3% per minute for thermal power plant and 270% up and 360% down per minute for hydro plant have been considered. The dynamic performance of a two-area interconnected Hydro-thermal power system is investigated and compared with particle swarm optimization (PSO) and differential evolution (DE) techniques by incorporating a Thyristor Controlled Phase Shifter (TCPS) in series with the tie-line. The overall performance of the considered system has been significantly improved by controlling the phase angle of TCPS with the help of proposed Fuzzy PID controller. It is revealed that the frequencies of both area and tie-line power oscillations are quickly damped out by the proposed scheme under step load perturbations. Furthermore, the robustness of the proposed system is analysed when subjected to different loadings without recalculating the gains of the controller.
机译:在本文中,一种元启发式优化算法已被应用到用于自动发电控制(AGC)的互联水火电系统中。基于模糊,比例,积分和微分(PID)控制器的最佳增益是通过采用提出的Gray Wolf Optimizer(GWO)算法获得的。考虑到火力发电厂每分钟3%的发电率约束,水力发电厂每分钟270%的增长速率和360%的下降率已经被考虑。通过结合与联络线串联的晶闸管控制相移器(TCPS),研究了两区域互联的水火电系统的动态性能,并将其与粒子群优化(PSO)和差分进化(DE)技术进行了比较。通过使用提出的模糊PID控制器控制TCPS的相角,可以大大改善所考虑系统的整体性能。结果表明,在阶跃负载扰动下,所提出的方案可快速抑制面积和联络线功率振荡的频率。此外,在不重新计算控制器增益的情况下,分析了所提出系统在不同负载下的鲁棒性。

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