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A novel application of ALO-based fractional order fuzzy PID controller for AGC of power system with diverse sources of generation

机译:基于ALO的分数阶模糊PID控制器对多种生成来源AGC的一种新型应用

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摘要

The operation and control of the modern power system has become complex and difficult due to the incessant penetration of nonconventional energy sources integrated to the power grid and the structural variation of power system with continuing escalation of power demand in recent years. This entails the implementation of intelligent control strategy for satisfactory operation of the power system. Hence, a fractional order fuzzy proportional integral derivative (FOFPID) controller is suggested in this article for automatic generation control of two unequal area interconnected power system with diverse generating units such as thermal, hydro, diesel and wind power plants. The dynamic performance of the system is investigated by using proportional integral derivative (PID), fractional order PID (FOPID), fuzzy PID (FPID) and fractional order fuzzy PID (FOFPID) controllers separately. The parameters of these controllers are optimised by using ant lion optimiser algorithm with integral time absolute error as the objective function. The supremacy of the proposed controller is established by contrasting the results with FPID, FOPID and PID controllers. It is also observed that FPID controller gives superior result than PID and FOPID controllers. Further it is found that the result of FOPID controller is better than the integer order PID controller. Finally robustness analysis is performed to confirm the robustness of the proposed controller against parametric variations and random loading of the system.
机译:现代电力系统的操作和控制变得复杂且困难,因为近年来电力系统的电力系统的结构变化不断渗透到电力系统的结构变化,近年来的电力需求持续升级。这需要实施智能控制策略,以实现电力系统的令人满意的操作。因此,在本文中提出了一种分数阶模糊比例积分衍生物(FOFPID)控制器,用于自动产生两个不等面积互连动力系统,具有多样化的发电机,如热,水电,柴油和风力发电厂。通过使用比例积分衍生物(PID),分数级PID(FOPID),模糊PID(FPID)和分数阶模糊PID(FOFPID)控制器分别使用比例积分衍生物(PID)来研究系统的动态性能。这些控制器的参数是通过使用蚂蚁优化器算法优化,作为目标函数的整体时间绝对误差。通过用FPID,FoPID和PID控制器对比结果来建立所提出的控制器的至高无上。还观察到FPID控制器提供优于PID和FOPID控制器的卓越结果。此外,发现FoPID控制器的结果优于整数PID控制器。最后进行稳健性分析以确认所提出的控制器对系统的参数变化和随机加载的鲁棒性。

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