Hybrid Islanding Protection Scheme for V2G Connected System with Local Load

Kamakshi Patro, Jyotsna Nain, Abanishar Chakrabarti, Rakesh Roy, B. Das, P. R. Kasari, S. K. Biswas
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引用次数: 1

Abstract

In this paper a hybrid islanding scheme comprising a passive and active islanding detection technique is proposed for a vehicle to grid system. The passive system continuously monitors the rate of change of frequency and islanding condition is detected whenever it crossed a preset threshold value. Since transients in grid may also results in frequency deviation a higher threshold is desirable which increases the non-detection zone for passive islanding technique. An active islanding detection scheme is proposed where a linearly time varying reactive power in injected following an islanding detection by passive islanding method. Unlike conventional active islanding technique where change of frequency is compared with a threshold value, the proposed scheme evaluates correlation between the estimated rated of change of frequency (ROCOF) and measured ROCF. The value of this correlation function provides the threshold value for detection of islanding condition. Since the value of this correlation function in independent of the magnitude of the reactive power injection the proposed technique can work with lower injection of reactive power and hence distortion in power quality introduced by the proposed active islanding technique will be smaller
本地负载下V2G并网系统的混合孤岛保护方案
提出了一种基于被动和主动孤岛检测技术的混合孤岛检测方案。被动系统持续监测频率变化率,当频率超过预设阈值时检测到孤岛状态。由于电网中的瞬变也可能导致频率偏差,因此需要更高的阈值,这增加了被动孤岛技术的非检测区域。提出了一种主动孤岛检测方案,该方案在被动孤岛检测后注入线性时变无功功率。与传统的主动孤岛技术(频率变化与阈值进行比较)不同,该方案评估估计的频率变化额定值(ROCOF)与测量的ROCF之间的相关性。该相关函数的值为孤岛状态检测提供了阈值。由于该相关函数的值与无功功率注入的大小无关,因此所提出的技术可以在较低的无功功率注入下工作,因此由所提出的有源孤岛技术引入的电能质量失真将较小
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