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Optimal design and implementation of fuzzy fractional order PID controller for AGC study

机译:AGC研究的模糊分数阶PID控制器的优化设计与实现

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To deliver good quality of electric power to the consumers in an interconnected power system automatic generation control (AGC) shows a significant role. Hence in this paper, a novel Fuzzy Fractional Order Proportional-Integral (FFOPI) controller is proposed for AGC of two equal area multi source power system. The effectiveness of the proposed controller is established by comparing its performance with that of Proportional-integral-Derivative (PID), and Fuzzy-PI controllers. The gain parameters of the controllers are tuned by using an efficient optimization technique called Symbiotic Organism Search (SOS) optimisation Algorithm. Integral Time Absolute Error (ITAE) is used as the objective function for reducing the Area Control Error (ACE) in the optimisation process. Further, the robustness of the recommended controller is justified by inserting a random load in area-1. Hence, to supply reliable and quality electricity, the designed controller is found to be better and more efficient.
机译:为了在互连的电力系统中为用户提供优质的电力,自动发电控制(AGC)发挥了重要作用。因此,本文提出了一种新颖的模糊分数阶比例积分(FFOPI)控制器,用于两个等面积多源电力系统的AGC。通过将其性能与比例积分微分(PID)和Fuzzy-PI控制器的性能进行比较,可以确定所提出控制器的有效性。控制器的增益参数通过使用称为共生生物搜索(SOS)优化算法的高效优化技术进行调整。积分时间绝对误差(ITAE)用作减少优化过程中区域控制误差(ACE)的目标函数。此外,通过在区域1中插入随机负载可以证明推荐控制器的鲁棒性。因此,为了提供可靠和优质的电力,发现设计的控制器更好,更高效。

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