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PI Controller Based Load Frequency Control Approach for Single-Area Power System Having Communication Delay

机译:基于PI控制器的单区域电力系统负载频率控制方法

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The modern power systems are becoming complicated day by day because of the delays introduced by the communication networks. Due to this reason, the traditional load frequency control (LFC) design scheme depicts a destabilizing impact and an unacceptable performance. Therefore, this paper proposes an analytico-graphical approach for designing PI controller for a single-area LFC system having communication delay. The concept is based on extracting stability region in parameter space (k_p, k_i) with predefined gain and phase margins. Further, the values of optimal k_p and k_i are selected using integral error criterion. The proposed scheme gives faster disturbance rejection response as compared to the recently developed LFC scheme. The controller also works well when the system parameters are perturbed from their nominal values.
机译:由于通信网络引入的延迟,现代电力系统日益复杂。由于这个原因,传统的负载频率控制(LFC)设计方案描绘了稳定的影响和不可接受的性能。因此,本文提出了一种用于设计具有通信延迟的单区域LFC系统的PI控制器的分析图形方法。该概念基于具有预定增益和相位边距的参数空间(K_P,K_I)中的稳定区域。此外,使用积分误差标准选择最佳K_P和K_I的值。与最近开发的LFC方案相比,该方案提供了更快的扰动抑制响应。当系统参数扰乱其标称值时,控制器也适用于。

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