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Bacterial Foraging Based FOPID Controller in AGC of an Interconnected Two-Area Reheat Thermal System Under Deregulated Environment

机译:解放环境下互连两区域再热系统AGC中的基于细菌觅食的FOPID控制器

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The paper deals with application of a bacterial foraging (BF) based fractional-order PID (FOPID) controller in automatic generation control (AGC) of a two equal area thermal system considering single stage of reheat turbine and appropriate generation rate constraint (GRC) under deregulated market environment based on bilateral policy scheme. Several integer-order (IO) controllers such as I, PI and PID controller have been tried out and dynamic responses so obtained are compared with FOPID controller to assess the best controller. Critical examinations clearly reveal that FOPID controller having five tuning parameters are quite robust and superior to conventional IO controllers in terms of settling time, reduced oscillations and peak overshoots. Further, investigation have been carried out for the selection of suitable value of speed regulation parameter (R) for governor (primary controller) using FOPID controller (secondary controller). Integral square error (ISE) criteria have been used as performance index to design the optimal controller.
机译:本文涉及在考虑重新加热涡轮机的单级和适当的产生速率约束(GRC)的单阶段的两个相等区域热系统的自动生成控制(AGC)中施加基于细菌觅食(BF)的分数级PID(FOPID)控制器。基于双边政策方案的解调市场环境。已经尝试了几种整数(IO)控制器,例如I,PI和PID控制器,并将如此获得的动态响应与FoPID控制器进行比较,以评估最佳控制器。关键考试明确揭示了具有五个调谐参数的FoPID控制器在稳定时间,降低振荡和峰值过度方面具有相当坚固且优于传统的IO控制器。此外,使用FoPID控制器(辅助控制器),已经对调速器(主控制器)的速度调节参数(R)的合适值进行了研究。积分平方误差(ISE)标准已被用作性能索引来设计最佳控制器。

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