风力发电机接地电阻的现场评估与测试——以咸水风电场为例

Lerato F. Mashala, U. B. Akuru, O. Okoro, C. C. Awah
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引用次数: 1

摘要

本文主要研究风力机基础接地的改进。接地在风力发电机的建设中起着巨大的作用。因此,不遵守IEEE标准80-2000的协议:IEEE交流变电站接地安全指南可能会对风力涡轮机造成严重威胁并影响电力生产。风力发电的防雷系统(LPS)已成为一个重要的公共问题。由于接地系统故障造成的叶片损坏、与低压和控制电路故障有关的事故在世界各地的各种风电场中都有过记录。风力涡轮机的有效防雷是非常重要的,因为风力涡轮机安装的地区具有高等时电平。此外,越来越多地使用这种可再生能源需要高可靠性和充分的保护。本文以南非北开普省的sotwater风电场为例,对高、中压接地故障满足地电位上升(GPR)性能标准,并对接地进行改进以满足要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field Evaluation and Testing of Wind Turbine Earthing Resistance: A Case Study of Soetwater Wind Farm
This study focuses on the improvement of wind turbine foundation earthing. Earthing plays a huge role in the wind turbine construction. Thus, failing to adhere to protocols as per IEEE Std 80-2000: IEEE Guide for Safety in AC Substation Grounding may pose serious threat to wind turbines and affect production of electricity. Lightning protection systems (LPS) for wind power generation is becoming an important public issue. Damages and set-backs from breaking down of blades, accidents relating to low-voltage and control circuit breakdowns have been previously recorded from various wind farms around the world due to failure in the earthing system. Effective lightning protection for wind turbines is very important because areas where wind turbines are installed have a high isochronous level. In addition, increasing use of this renewable energy requires high reliability and adequate protection. In this paper, a case study of Soetwater Wind Farm in the Northern Cape Province of South Africa is undertaken to satisfy ground potential rise (GPR) performance criterion for HV and MV earth faults, as well as improvement of earthing to meet the requirements.
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