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作 者:曾祥君[1] 张小丽[2] 马洪江[1] 雷莉[1]
机构地区:[1]长沙理工大学电气与信息工程学院,长沙410076 [2]长沙电业局,长沙410004
出 处:《高电压技术》2008年第11期2311-2316,共6页High Voltage Engineering
基 金:国家自然科学基金(50577001);霍英东教育基金会青年教师基金(101058);湖南省自然科学基金(07JJ3110)~~
摘 要:为减少电网故障行波传播色散特性对行波波头检测和波速测量的影响,提高电网故障行波定位的准确度,提出了基于小波包能量谱的电网故障行波定位方法。该法结合小波包技术与傅立叶变换的谱分析,对行波信号进行分析,提取能量相对集中的故障频带信号进行故障行波定位计算;行波到达时间由该频带相应尺度下的小波包能量时谱提取的行波特征点位置计算;该频带行波传播速度由输电线路两端对外部扰动的实测行波数据计算。大量的电网故障行波定位ATP仿真分析结果和现场实验测试分析表明,该电网故障行波定位方法能有效提取电网行波特征信号,减少行波传播色散特性和线路长度变化的影响,定位误差<200m。In order to reduce the influence of the transmission dispersion characteristics of power grid faults generated traveling wave on the wave head detection and the wave transmission velocity measurement, and to improve the faults location precision, a fault location method based on wavelet packet energy spectra is presented. The wavelet packet technology and spectrum analysis of the Fourier transformation is adopted to analyze the traveling wave signals and extract the frequency band signal with energy concentrated for fault location. The traveling wave arrival time is calculated by the frequency band signal's characteristic points which are extracted by wavelet packet energy spectra in time domain. The frequency band signal transmission velocity is calculated by the transmission line two- end-measured traveling waves generated by an external disturbance. Many fault location cases are simulated with an ATP software and some field tests are carried out in a power grid. The results show that the fault location method can extract the faults characteristic signals effectively and reduce the influence of traveling wave dispersion characteristics and line length change, and the fault location error is no more than 200 meter.
关 键 词:电网故障 色散特性 小波包能量谱 行波 行波定位 波速
分 类 号:TM755[电气工程—电力系统及自动化]
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