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Non-integer IMC based PID Design for Load Frequency Control of Power System Through Reduced Model Order

机译:基于非整数IMC的PID设计,用于减少模型顺序的电力系统负载频率控制

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This paper deals with non-integer internal model control (FIMC) based proportional-integral-derivative(PID) design for load frequency control (LFC) of single area non-reheated thermal power system under parameter divergence and random load disturbance. Firstly, a fractional second order plus dead time(SOPDT) reduced system model is obtained using genetic algorithm through step error minimization. Secondly, a FIMC based PID controller is designed for single area power system based on reduced system model. Proposed controller is equipped with single area non-reheated thermal power system. The resulting controller is tested using MATLAB/SIMULINK under various conditions. The simulation results show that the controller can accommodate system parameter uncertainty and load disturbance. Further, simulation shows that it maintains robust performance as well as minimizes the effect of load fluctuations on frequency deviation. Finally, the proposed method applied to two area power system to show the effectiveness.
机译:本文涉及基于非整数内模控制(FIIMC)的比例整体衍生(PID)设计,用于在参数发散和随机负荷干扰下的单区域非重新加热的热电系统的负载频率控制(LFC)。首先,使用遗传算法通过逐步误差最小化获得分数二阶加上的时间模型(SOPDT)减少的系统模型。其次,基于FIMC的PID控制器专为基于减小的系统模型的单区域电力系统而设计。提出的控制器配有单区域非重新加热的热电系统。在各种条件下使用MATLAB / Simulink测试所得到的控制器。仿真结果表明,控制器可以适应系统参数不确定性和负载干扰。此外,模拟表明它保持稳健的性能,并尽量减少负载波动对频率偏差的影响。最后,所提出的方法应用于两个区域电力系统以显示效果。

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