高压交联聚乙烯电缆附件典型缺陷局部放电特性分析Analysis on Partial Discharge Characteristics of Typical High-voltage XLPE Cable Accessory Defects
李乃一,曹俊平,王少华,杨勇,周路遥,金涌涛
LI Naiyi,CAO Junping,WANG Shaohua,YANG Yong,ZHOU Luyao,JIN Yongtao
摘要(Abstract):
为研究高压交联聚乙烯电缆附件存在缺陷时的局部放电现象,制作了接头与电缆界面存在气隙、本体外屏蔽层存在导电尖端、接头内表面划伤、接头外表面破损、终端应力锥错位及终端内部存在导电微粒6种典型缺陷模型,分别对其进行了高频局部放电带电检测,对比分析了放电起始电压与PRPD(局部放电相位分离)谱图。结果表明,各典型缺陷模型的放电起始电压、放电量特性等均存在明显区别,为局部放电模式识别研究提供参考。
In order for study of partial discharge in the case of high-voltage XLPE cable accessory defect, six typical defect samples were manufactured, such as air gap between joint and cable, external shield tip, internal surface scratch and external surface breakage at joint, stress cone malposition at terminal and conductive particles in terminal. The high-frequency partial discharge tests were performed. The initial discharge voltages and PRPD(phase resolved partial discharge) diagrams were analyzed and compared. The result shows that there are significant differences in initial discharge voltage, discharge quantity characteristic of typical fault models, which provides a reference for partial discharge mode recognition.
关键词(KeyWords):
电缆附件;缺陷;局部放电;高频电流传感器
cable accessory;defects;partial discharge;high-frequency current transformer
基金项目(Foundation): 国网浙江省电力有限公司科技项目(5211DS15002B)
作者(Author):
李乃一,曹俊平,王少华,杨勇,周路遥,金涌涛
LI Naiyi,CAO Junping,WANG Shaohua,YANG Yong,ZHOU Luyao,JIN Yongtao
DOI: 10.19585/j.zjdl.201901010
参考文献(References):
- [1]周远翔,赵健康,刘睿,等.高压/超高压电力电缆关键技术分析及展望[J].高电压技术,2014,40(9):2593-2612.
- [2]ORTON H.Power cable technology review[J].High Voltage Engineering,2015,41(4):1057-1067.
- [3]高峰,王森,蒲路,等.110 kV交联聚乙烯电缆异型中间接头系列故障分析[J].陕西电力,2013,41(6):68-70.
- [4]周承科,李明贞,王航,等.电力电缆资产的状态评估与运维决策综述[J].高电压技术,2016,42(8):2353-2362.
- [5]杨引虎,罗建勇,韦远涛,等.分布式电缆局部放电在线监测系统的研制[J].智慧电力,2018,46(3):91-94.
- [6]陆国俊,熊俊,阮班义,等.用振荡波电压法检测含有缺陷的10 kV交联聚乙烯电缆接头实验[J].广东电力,2011,24(6):18-22.
- [7]曹俊平,温典,蒋愉宽,等.110 kV电缆振荡波局部放电模拟试验分析[J].浙江电力,2017,36(2):1-4.
- [8]邓志勇.电缆附件局放内置传感器与超高频检测的研究[D].重庆:重庆大学,2008.
- [9]袁燕岭,李世松,董杰,等.电力电缆诊断检测技术综述[J].电测与仪表,2015,53(11):1-7.
- [10]袁金晶.10 kV电缆接头典型缺陷模拟及局部放电试验[J].广东电力,2015,28(10):83-86.
- [11]张龙,黄晨曦,张伟,等.交流和振荡波电压下XLPE电缆典型缺陷局部放电特性研究[J].高压电器,2015,51(8):43-48.
- [12]姜芸,闵红,罗俊华,等.220 kV电缆接头半导电尖端缺陷的局部放电试验[J].高电压技术,2010,36(11):2657-2661.
- [13]赵学风,蒲路,琚泽立,等.XLPE电力电缆附件局部放电测量与分析[J].电机与控制学报,2016,20(6):94-101.
- [14]韩宇泽,郭湘奇,储强.基于HFCT局放测试技术的高压电缆终端失效检测方法研究[J].电测与仪表,2016,53(17):60-64.
- [15]曹俊平,王少华,蒋愉宽,等.浙江电网高压电缆线路运行情况分析[J].电线电缆,2017(3):39-43.
- [16]李特,崔竹叶,曹俊平,等.高压电缆状态仿真及缺陷诊断平台的构建[J].浙江电力,2017,36(9):39-43.
- [17]胡鹏,李成钢,陈大兵.电缆GIS终端环氧套管开裂原因分析及对策研究[J].电力工程技术,2017,36(1):102-105.
- [18]黄涛,文姗,王庭华,等.不同材质电缆支架对电缆运行适用性研究[J].电力工程技术,2017,36(2):104-109.
- [19]鲁宁.高压XLPE电缆击穿的制造因素分析及有效控制[J].电力工程技术,2017,36(4):43-47.