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A Novel PID-FOPD Controller for LFC Including IPFC and RFB

机译:用于LFC的新型PID-FOPD控制器,包括IPFC和RFB

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This paper deals with the three-area power system load frequency control (LFC), comprises of thermal generation including reheat turbines. A cascade proportional integral derivative (PID) and fractional order proportional derivative (FOPD) i.e. PID-FOPD controller is proposed and analysed for LFC mechanism. Here cascading and fractional order mechanism will increase the degree of freedom of the proposed controller. Furthermore, interline power flow controller (IPFC) in combination with redox flow battery (RFB) ensures more improvement in system stability. Here, integral square error (ISE) is considered as performance index (PI) and a meta-heuristic sine cosine algorithm (SCA) is executed to optimize the controller parameters. The simulation results with MATLAB/SIMULINK® toolbox illustrates the advantage of the proposed controller over classical controllers for small load perturbation (SLP) and random load perturbation (RLP) in three-area power system. Lastly, sensitivity is checked by varying system parameters, which demonstrates the robustness PID-FOPD controller.
机译:本文涉及三面积电力系统负载频率控制(LFC),包括热电代,包括再热涡轮机。提出并分析了PID-FOPD控制器的级联比例积分衍生物(PID)和分数顺序比例衍生物(FOPD)。在这里,级联和分数阶机制将增加所提出的控制器的自由度。此外,与氧化还原流电池(RFB)组合的间片电流控制器(IPFC)确保了系统稳定性的更多提高。这里,积分方误差(ISE)被认为是性能索引(PI),并且执行元启发式正弦余弦算法(SCA)以优化控制器参数。 MATLAB /SIMULINK®工具箱的仿真结果说明了三个区域电力系统中的小型负载扰动(SLP)和随机负载扰动(RLP)的古典控制器的优势。最后,通过改变系统参数来检查灵敏度,该参数演示了鲁棒性PID-FOPD控制器。

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