高压厂变有载合闸时的差动保护误动作分析Analysis on Mal-operation of Differential Protection of High-voltage Auxiliary Transformer During On-load Switch-in
李军保
LI Jun-bao(Zhejiang Provincial Energy Group Company Ltd.
摘要(Abstract):
分析了一起厂用负荷由起备变低压侧切到高压厂变低压侧时,高压厂变差动保护误动的案例,结果表明由于起备变和高压厂变低压侧电压之间相位差较大,导致切换过程中产生了有载合闸励磁涌流,衰减直流分量使电流互感器局部暂态饱和,两侧校正电流出现了较大的相位偏差,从而产生了差动电流,导致比率差动保护动作。为了防止再发生类似事故,可采取提高厂变比率差动保护启动定值或二次谐波综合制动等技术措施。
This paper introduces a case of mal-operation of auxiliary transformer differential protection during the auxiliary load is switched from low voltage side of standby transformer to that of auxiliary transformer.The analysis results show that the phase difference between low voltage side of standby transformer and low voltage side of auxiliary transformer causes excitation surge current during the switching.The partial transient saturation of the current transformer due to the slowly attenuated direct component of the surge current and significant phase difference of correcting current at both sides that causes differential current are main reasons of mal-operation of differential operation.In order to prevent the next reoccurrence of similar accidents,measures such as elevation of ratio differential starting value and comprehensive harmonic restraint mode may be taken.
关键词(KeyWords):
变压器;差动保护;励磁涌流;有载合闸;二次谐波制动
transformer;differential protection;excitation surge current;loaded transformer energization;second harmonic restraint
基金项目(Foundation):
作者(Author):
李军保
LI Jun-bao(Zhejiang Provincial Energy Group Company Ltd.
DOI: 10.19585/j.zjdl.2013.07.006
参考文献(References):
- 王维俭.电气主设备继电保护原理与应用[M].北京:中国电力出版社,1996.
- 袁宇波,李德佳,陆于平,等.变压器和应涌流的物理机理及其对差动保护的影响[J].电力系统自动化,2005,29(6):9-14.
- 毕大强,孙叶,李德佳,等.和应涌流导致差动保护误动原因分析[J].电力系统自动化,2007,31(22):36-40.
- 翁汉琍,林湘宁,刘沛.变压器有载合闸时纵联差动保护误动的分析[J].中国电机工程学报,2006,26(20):27-31.
- 林湘宁,刘沛,刘世明,等.变压器有载合闸的超饱和现象及对变压器差动保护的影响[J].中国电机工程学报,2002,22(3):6-11.
- 许正亚.变压器及中低压网络数字式保护[M].北京:中国水利水电出版社,2004.
- 变压器
- 差动保护
- 励磁涌流
- 有载合闸
- 二次谐波制动
transformer - differential protection
- excitation surge current
- loaded transformer energization
- second harmonic restraint