大型集中式DFIG风电场带间带差动保护新方案

N. Rezaei, M. Uddin, I. K. Amin, M. Othman, M. Marsadek
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引用次数: 3

摘要

双馈感应发电机(DFIG)风力发电场作为一种可靠的可再生能源,近二十年来已越来越多地并入电网。距离保护继电器一直是风电场间区最常用的保护方案,然而,如今随着大型DFIG风电场的大量渗透,这些继电器不再可靠,因为它们无法在内部和外部故障时提供准确的阻抗测量,从而导致误操作,误跳闸或延迟运行。本文在Matlab/Simulink中开发了一种基于差动的继电保护方案,为风电场互联区提供可靠的保护。此外,还设计了一个大型集中式风电场的汇总模型,通过在不同位置施加大量内部和外部故障来检查所提出的保护技术的性能。结果表明,基于差动的继电保护(DBPR)能够为风电场间带提供可靠、高效和稳健的保护。因为,差动继电器提供高灵敏度,快速操作,抗功率波动,并且本质上是一种基于单元保护的方案,与距离继电器相比非常有利。此外,与距离继电器不同,dbpr不需要处理“欠伸”和“过伸”特性,因此在外部故障期间不会出现误脱扣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Differential-based Protection Scheme for Intertie Zone of Large-Scale Centralized DFIG Wind Farms
Doubly Fed Induction Generator (DFIG) wind farms as a reliable source of renewable energy have been increasingly integrated to power grid in the last two decades. Distance protection relay has continuously been the most common protection scheme implemented for wind farm intertie zone, however, nowadays with the enormous penetration of large-scale DFIG wind farms, these relays are no longer reliable, due to their incapability of providing accurate impedance measurement during internal and external faults, thus, causing maloperation, false tripping or delayed operation. In this study, a differential-based protective relay scheme is developed in Matlab/Simulink in order to provide reliable protection for wind farm intertie zone. Also, an aggregated model of a large-scale centralized wind farm has been designed to examine the performance of the proposed protection technique by imposing numerous internal and external faults at different locations. The results proved that differential-based protection relays (DBPR) are able to provide reliable, efficient and robust protection for the intertie zone of wind farms. Because, the differential relays provide high sensitivity, swift operation, immunity to power swings, and also inherently being a unit protection-based scheme that is extremely advantageous compared to distance relays. Moreover, unlike distance relays DBPRs do not require to cope with “underreach” and “overreach” characteristics, resulting in no false tripping during external faults.
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