Differential Protection for Lines Connected to Inverter-Based Resources: Problems and Solution

N. George, O. Naidu, A. Pradhan
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Abstract

Inverter based renewable energy resources with controlled current output has fault characteristics different from traditional synchronous generators. In this paper, we analyze how the peculiar fault current characteristics of these sources impact percentage and alpha plane line differential protection. Inherent phase selection capability, dependability, and speed of operation of alpha plane differential is identified to be impacted mainly due to increased system non-homogeneity. Dependability of percentage differential protection is also marginally impacted particularly when the grid end is also weak. Further, a time domain energy-based current differential protection is proposed, which has advantages when compared to existing line differential protection solutions. Extensive testing, and validation using field records, demonstrates improved reliability, sensitivity, and speed of the proposed method for synchronous generator as well as IBR-connected lines.
连接到基于逆变器资源的线路的差动保护:问题与解决方案
基于可控电流输出的可再生能源逆变器具有不同于传统同步发电机的故障特征。本文分析了这些电源特有的故障电流特性对百分比和α平面线路差动保护的影响。由于系统非均匀性的增加,影响了α平面差分固有的相位选择能力、可靠性和运行速度。百分比差动保护的可靠性也受到轻微影响,特别是当电网端也较弱时。在此基础上,提出了一种基于时域能量的电流差动保护方案,与现有的线路差动保护方案相比,具有一定的优越性。广泛的测试和现场记录验证表明,该方法提高了同步发电机和ibr连接线路的可靠性、灵敏度和速度。
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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