基于智能接地电流放大装置的配电网单相接地故障研判方法Study on Single-Phase-to-Earth Fault Diagnosis Based on Smart Grounding Current Amplification Equipment in Distribution Networks
谢成,金涌涛,温典,雷超
XIE Cheng,JIN Yongtao,WEN Dian,LEI Chao
摘要(Abstract):
小电流接地配电网发生单相接地时故障特征微弱,现有检测方法和选线装置应用效果不理想,故障处理仍以人工试拉选线为主。提出一种基于智能接地电流放大装置的单相接地故障检测原理,研究了检测装置的整体构架和研判系统的处理流程,通过试点工程应用验证了装置的整体性能与故障研判的准确性。实践证明,基于智能接地电流放大装置的故障研判方法能够准确、快速地实现中压配电网单相接地故障的选线与区段定位。
In the case of single-phase-to-earth fault in small current grounding distribution network, the fault feature is weak and the existing detection method and line selection device are not practically ideal. Therefore, handling of line selection fault still relies on manual switch-out. In this paper, the principle of singlephase-to-earth fault diagnosis method based on smart grounding current amplification equipment is proposed.The overall structure of the equipment and processing procedure of the diagnosis system are investigated.Through application in a pilot project, equipment performance and diagnosis precision are verified. The practice shows that the fault diagnosis based on smart grounding current amplification equipment correctly and fast enables line selection and segment location of single-phase-to-earth fault in medium-voltage distribution networks.
关键词(KeyWords):
单相接地;智能接地电流放大;故障研判;选线;定位
single-phase-to-earth;smart grounding current amplification;fault diagnosis;line selection;location
基金项目(Foundation):
作者(Author):
谢成,金涌涛,温典,雷超
XIE Cheng,JIN Yongtao,WEN Dian,LEI Chao
DOI: 10.19585/j.zjdl.201704006
参考文献(References):
- [1]李森,宋国兵,康小,等.基于时域下相关分析法的小电流接地故障选线[J].电力系统保护与控制,2008,36(13):15-20.
- [2]徐靖东,张保会,尤敏,等.基于暂态零序电流特征的小电流接地选线装置[J].电力自动化设备,2009,29(4):101-104.
- [3]索南加乐,张超,王树刚.基于模型参数识别法额小电流接地故障选线研究[J].电力系统自动化,2004,28(19):65-70.
- [4]苏战涛,吕艳萍.一种基于小波包分析的小电流接地电网单相接地故障选线新方法[J].电网技术,2004,28(12):30-33.
- [5]赵建文,刘永佳,梁静,等.基于改进Fast ICA及Romanovsky准则的故障选线[J].中国电机工程学报,2016,36(19):5209-5218.
- [6]吴青军,黄驾驾,刘东红.零序过流保护在单相接地故障选线中的应用探讨[J].浙江电力,2016,35(5):47-49.
- [7]谭健章.基于配网自动化的单相接地故障识别方法分析[J].科技创新与应用,2016(33):208.
- [8]兰岚.配电线路故障衍化分析[J].浙江电力,2016,35(4):28-31.