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Decentralized load frequency control using DE optimized linear auto disturbance rejection controller for multi-area power systems

机译:使用DE优化的线性自动抗干扰控制器的分散负载频率控制,用于多区域电力系统

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摘要

In this paper, design and performance analysis of Differential Evolution (DE) algorithm in tuning Linear Auto Disturbance Rejection Controller (LADRC) for Load Frequency Control (LFC) of multi-area power systems is investigated. The LADRC does not need a detailed mathematical model of controlled plant and the performance of controller is related to two tuning parameters. The design problem is formulated as an optimization problem and DE is employed to search for optimal controller parameters by minimizing the time domain objective function. A method to analyze the stability of a multi-area power system under a decentralized LFC is presented accounting the inherent structure of the multi-area power system. Decentralized LFC tuning on a three-area power system shows that the proposed method is easy to apply for multi-area power systems and good damping performance can be achieved.
机译:本文研究了用于多区域电力系统负载频率控制(LFC)的线性自抗干扰控制器(LADRC)的微分进化(DE)算法的设计和性能分析。 LADRC不需要详细的受控工厂数学模型,并且控制器的性能与两个调整参数有关。将设计问题表述为优化问题,并通过最小化时域目标函数将DE用于搜索最优控制器参数。提出了一种在分散的LFC下分析多区域电力系统稳定性的方法,该方法考虑了多区域电力系统的固有结构。在三区域电力系统上进行分散的LFC调整表明,该方法易于在多区域电力系统中应用,并且可以实现良好的阻尼性能。

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