Direct Lightning Impact Assessment on a Rural Mini-Grid of Nepal

Nasib Khadka, A. Bista, D. Bista, Shriram Sharma, B. Adhikary
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引用次数: 1

Abstract

Lightning-related damage to overhead medium-voltage distribution networks is one of the prime concerns in power systems. This paper discusses distribution network modeling techniques required for lightning studies. The presented models of lightning current, line conductors, line insulators, distribution poles, grounding, distribution transformers, and surge arresters have been used for a direct lightning simulation case study. The case study is done in an eight kilometers long rural mini-grid of Nepal, where seven synchronous generators and seven distribution transformers are closely located. From this study, the dead-end low-voltage side and the midway medium-voltage side were found to be most stressed. So, it is recommended to use appropriate arresters at the low-voltage side of dead-end distribution transformers specifically to protect generators and low-voltage consumer appliances. Similarly, higher energy duty arresters can be installed at the medium-voltage bushing of midway transformers for better performance and reliability.
直接雷击对尼泊尔农村微型电网的影响评估
雷电对架空中压配电网造成的损害是电力系统的主要问题之一。本文讨论了雷电研究所需的配电网建模技术。提出的雷击电流、线路导体、线路绝缘子、配电杆、接地、配电变压器和避雷器模型已用于直接雷击模拟案例研究。该案例研究是在尼泊尔8公里长的农村微型电网中进行的,其中7台同步发电机和7台配电变压器紧密分布。从本研究中发现,死角低压侧和中间中压侧应力最大。因此,建议在配电变压器的低压侧使用适当的避雷器,以保护发电机和低压家用电器。同样,在中途变压器的中压套管处也可以安装高能量负载避雷器,以提高性能和可靠性。
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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