一种输电线路雷击概率预测方法及其在输电系统短期可靠性评估中的应用
A Transmission Line Lightning Strike Probability Prediction Method and Its Application to Transmission System Short-Term Reliability Evaluation
DOI: 10.12677/SG.2014.42008, PDF, HTML, 下载: 3,106  浏览: 8,843 
作者: 杨 清:云南电网公司生产技术部,昆明;熊小伏, 王 建, 翁世杰:重庆大学输配电装备及系统安全与新技术国家重点实验室,重庆
关键词: 雷电输电线路可靠性评估信息扩散Lightning Transmission Line Reliability Evaluation Information Diffusion
摘要: 输电线路长期暴露在大气环境之中,雷电天气下输电线路易发生雷击跳闸事件,严重影响输电系统可靠性,有必要针对雷电天气下的输电网可靠性进行评估。本文研究了输电线路在雷电天气下的故障概率模型,并用于在预报天气状况下的输电网可靠性预测(评估)。首先根据历史雷电记录建立雷击故障概率模型,然后根据此概率模型对未来雷电天气下的输电线路雷击故障概率进行计算,并进而计算输电网可靠性指标。通过IEEE RTS-79测试系统验证了所提方法的有效性,算例结果表明,雷电天气对输电线路和系统可靠性有较大的影响。该模型可以指导雷电天气下电网短期运行和在线调度决策。
Abstract: The transmission lines are exposed to the atmospheric environment and will be affected by adverse weather such as lightning storm, so that it will affect the reliability of transmission system. This paper studies the fault probability model of transmission line during the lightning storm, and evaluates the short-term reliability of transmission system in the forecasting weather condition. Firstly, we build the lightning strike fault probability model of the transmission line based on historical lightning record information, then calculate the lightning strike probability under the forecasting weather conditions, and furthermore evaluate the reliability index of transmission system. We utilize IEEE RTS-79 system to verify the validity of the proposed model and the results show that lightning has great negative influence on the transmission lines and the reliability of transmission system. The reliability evaluation model proposed in this paper can guide the short-term operation and online scheduling for transmission system operators.
文章引用:杨清, 熊小伏, 王建, 翁世杰. 一种输电线路雷击概率预测方法及其在输电系统短期可靠性评估中的应用 [J]. 智能电网, 2014, 4(2): 37-46. http://dx.doi.org/10.12677/SG.2014.42008

参考文献

[1] 余勇, 彭骏, 卜俊伟 (2010) 基于地理信息系统的雷电业务系统. 成都信息工程学院学报, 3, 308-311.
[2] 杨庆, 司马文霞, 冯杰 (2008) 云广特高压直流输电线路雷电屏蔽性能研究. 高电压技术, 3, 442-446.
[3] 李培国 (2000) 国外对特高压输电线路雷击跳闸原因的一个新观点. 电网技术, 7, 63-65.
[4] 维列夏金, 吴维韩 (1998) 俄罗斯超高压和特高压输电线路防雷运行经验分析. 高电压技术, 2, 76-79.
[5] 周浩, 余宇红 (2005) 我国发展特高压输电中一些重要问题的讨论. 电网技术, 12, 1-9.
[6] 王惠忱 (1999) 雷电绕击机理分析. 高电压技术, 3, 52-54.
[7] 童杭伟, 陈林云, 张斌 (2013) 输电线路外部雷击风险评估模型的研究. 华东电力, 9, 1906-1910.
[8] Billiton, R. and Acharya, J.R. (2006) Weather-Based Distribution System Reliability Evaluation. In: Proceedings of IEE Generation, Transmission and Distribution Conference, IEE, Stevenage, 499-506.
[9] Zhou, Y.J., Pawha, A. and Yang, S. (2006) Modeling Weather-Related Failures of Overhead Distribution Lines. IEEE Transactions on Power System, 4, 1683-1690.
[10] 王建学, 张耀, 孙羽 (2011) 大规模冰灾对输电系统可靠性的影响分析. 中国电机工程学报, 28, 49-56.
[11] 黄崇福, 王家鼎 (1995) 模糊信息优化处理技术及其应用. 北京航空航天大学出版, 北京.
[12] 周家启, 黄雯莹, 吴继伟 (1986) 工程系统可靠性评估——原理和方法. 科技文献出版社重庆分社, 重庆.
[13] Transmission and Distribution Committee of the IEEE PES (1997) IEEE Guide for Improving the Lightning Performance of Transmission Lines. IEEE Std., 1243.
[14] 常越, 陈德生 (2010) 多普勒天气雷达与雷电预警关系研究. 气象与环境科学, 1, 36-39.
[15] 李蔚, 盛德仁, 陈坚红 (2007) 双重BP神经网络组合模型在实时数据预测中的应用. 中国电机工程学报, 17, 9497.