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A novel optimized hybrid fuzzy logic intelligent PID controller for an interconnected multi-area power system with physical constraints and boiler dynamics

机译:具有物理约束和锅炉动力学的互联多区电力系统的新型优化混合模糊逻辑智能PID控制器

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In the fast developing world nowadays, load frequency control (LFC) is considered to be a most significant role for providing the power supply with good quality in the power system. To deliver a reliable power, LFC system requires highly competent and intelligent control technique. Hence, in this article, a novel hybrid fuzzy logic intelligent proportional-integral-derivative (FLiPID) controller has been proposed for LFC of interconnected multi-area power systems. A four-area interconnected thermal power system incorporated with physical constraints and boiler dynamics is considered and the adjustable parameters of the FLiPID controller are optimized using particle swarm optimization (PSO) scheme employing an integral square error (ISE) criterion. The proposed method has been established to enhance the power system performances as well as to reduce the oscillations of uncertainties due to variations in the system parameters and load perturbations. The supremacy of the suggested method is demonstrated by comparing the simulation results with some recently reported heuristic methods such as fuzzy logic proportional-integral (FLPI) and intelligent proportional-integral-derivative (PID) controllers for the same electrical power system. the investigations showed that the FLiPID controller provides a better dynamic performance and outperform compared to the other approaches in terms of the settling time, and minimum undershoots of the frequency as well as tie-line power flow deviations following a perturbation, in addition to perform appropriate settlement of integral absolute error (IAE). Finally, the sensitivity analysis of the plant is inspected by varying the system parameters and operating load conditions from their nominal values. It is observed that the suggested controller based optimization algorithm is robust and perform satisfactorily with the variations in operating load condition, system parameters and load pattern. (C) 2017 ISA. Published by Elsevier Ltd. All rights reserved.
机译:在现在快速发展的世界中,负载频率控制(LFC)被认为是在电力系统中提供具有良好质量的电源的最重要作用。为了提供可靠的电力,LFC系统需要高度称价和智能的控制技术。因此,在本文中,已经提出了一种新颖的混合模糊逻辑智能比例 - 积分衍生物(Flipid)控制器,用于互连的多区域电力系统的LFC。考虑了具有物理约束和锅炉动力学的四面互连的热电系统,并且使用采用积分方误差(ISE)标准的粒子群优化(PSO)方案进行了优化了Flipid控制器的可调参数。已经建立了该方法以增强电力系统性能,以及由于系统参数和负载扰动的变化,降低了不确定性的振荡。通过将模拟结果与一些最近报告的启发式方法(例如用于同一电力系统的模糊逻辑比例积分(FLPI)和智能比例 - 积分 - 衍生物(PID)控制器,通过比较模拟结果来证明所提出的方法的至高无上。该研究表明,与稳定时间方面的其他方法相比,触发器控制器提供了更好的动态性能和优于频率的最小下冲以及扰动之后的速度电流偏差,除了执行适当整体绝对误差(IAE)的结算。最后,通过改变系统参数和从标称值的操作负载条件来检查植物的敏感性分析。观察到,建议的基于控制器的优化算法具有稳健性,并且在操作负载条件,系统参数和负载模式方面的变化令人满意地表现。 (c)2017 ISA。 elsevier有限公司出版。保留所有权利。

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