Adaptive Underfrequency Load Shedding And Voltage Stability In The Power System

Maja Muftić Dedović, Nedis Dautbašić, Ajdin Alihodžić, Adin Memić
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Abstract

Abstract Underfrequency load shedding is a common technique for maintaining the stability of the power system by removing the overload in a certain part of the system after a disturbance. The purpose of underfrequency load shedding is to balance output and load when a particular event causes a significant frequency drop in the power system. In conventional underfrequency load shedding schemes, the frequency thresholds of frequency relays are constant, this way it is difficult and sometimes impossible to control the frequency in various disturbances in the system. In this paper, an adaptive underfrequency load shedding (AUFLS) algorithm that is independent of communication between relays is presented. The relays are tuned to reduce loads taking into account local parameters such as voltage and frequency to prevent the occurrence of a cascade failure that can ultimately lead to the breakdown of the entire power system. In this paper, the rate of change of frequency (ROCOF) is obtained by applying the Hilbert-Huang transformation. Numerical simulations conducted on the New England 39 bus test system in the DIgSILENT PowerFactory and MATLAB software packages confirm the effectiveness of the proposed approach.
电力系统自适应低频减载与电压稳定
低频减载是一种常用的在扰动发生后,通过消除系统某一部分的过载来维持电力系统稳定的技术。低频减载的目的是在特定事件导致电力系统频率显著下降时平衡输出和负载。在传统的低频减载方案中,频率继电器的频率阈值是恒定的,这样在系统中各种干扰的情况下很难甚至不可能控制频率。本文提出了一种不依赖于继电器间通信的自适应低频减载算法。考虑到电压和频率等局部参数,对继电器进行调谐以减少负载,以防止发生可能最终导致整个电力系统崩溃的级联故障。本文应用Hilbert-Huang变换,得到了频率变化率(ROCOF)。在DIgSILENT PowerFactory和MATLAB软件包中对新英格兰39总线测试系统进行了数值仿真,验证了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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