
第3卷第7期 2015年7月
DOI:10.14171/j.2095-5944.sg.2015.07.010
智能电网 Smart Grid
文章编号:2095-5944 (2015) 07-0640-06
中图分类号:TM71
Vol.3 No.7 Jul.2015
文献标志码:A
变压器中性点直流电流抑制装置的试验分析
刘召,张辉,印永华,熊敏,张金平,王俊永3(1.南京南瑞集团公司北京监控技术中心,北京市昌平区102200
2.中国电力科学研究院,北京市海淀区100192;3.国网智能电网研究院,北京市昌平区102211)
ExperimentalAnalysisOnTransformerNeutralCurrentBlockingDevice LIU Zhao', ZHANG Hui', YIN Yonghua", XIONG Min, ZHANG Jinping, WANG Junyong(1. NARI Group Corporation Beijing Monitoring Technology Center, Changping District, Beijing 102200, China;
2. China Electric Power Research Institute, Haidian District, Beijing 100192, China; 3. State Grid Smart Grid Research Institute, Changping District, Beijing 102211, China)
aoeradadooanaooreoeaoeaoai returm, the impact of grounding current passed through grounding pole on the nearby transformers with earthed neutral point in AC eaaee ensoaanareaonsaaoaaaeer as eaeseoae blocking device by the way of putting a capacitor in series between transformer neutrals. The main part of the device is presented briefly. For simulating the fault current flowing through the device and the voltage added on the device when transformer neutral current blocking device is installed at transformer neutrals, high-current experiments for the device are carried out and experimental results are analyzed. The waves of current flowing through the device are analyzed. To the problems occurred in the test, the unreasonable parts of the device are mended for improving its reliability.
KEY WORDS: HVDC; transformer DC bias; transformer neutral current blocking device; experimental analysis
摘要:随着我国大量直流输电工程的建设和投入运行,单极大地回线运行方式下,接地极入地电流对附近交流系统中性点接地变压器的影响间题已引起电力行业的高度重视。针对变压器中性点流过较大的直流电流和交流线路发生故障时流过变压器中性点较大的短路电流的情况,中国电力科学研究院采用在变压器中性点串电容的方法开展变压器中性点直流电流抑制装置
流和加在装置两增的电压,对装置进行3次大电流冲击试验并分析试验结果。对装置内流过的电流波形进行分析,针对所暴露出的间题,改进装置的不合理部分,提高装置的可靠性。
关键词:直流输电:变压器直流偏磁:变压器中性点直流电流抑制装置:试验分析
0引言
随着高压直流输电在我国迅速发展,国内已有多个大型直流输电工程投入运行,在远距离输电和电网互联中扮演越来越重要角色的同时,也带来了直流偏磁等其他问题。高压直流输电线路在单极大地回线和双极不平衡运行方式下,接地极入地电流使附近交流系统中性点接地变压器中流过直流电流,从而引起变压器发生直流偏磁[1-7]。随着单极大地返回方式直流输送功率的增加,加大变压器铁心饱和,导致系统正常运行时这些变压器上将会出现振动加剧、噪声增大、局部过热等问题,
近年来,随着哈密南-郑州特高压输电工程及溪洛渡-浙江±800kV特高压直流输电工程投入运行,变压器直流偏磁现象越来越严重。尤其是宾金直流单极大地回线满负荷运行工况下,浙江地区变压器中性点直流电流大于200A的变电站3座, 100~200A变电站2座,20~100A变电站19座 10~20A变电站13座。小电阻法和直流电位补偿法均能有效抑制变压器中性点的直流电流8-13。鉴于我国受端地区存在多回直流输电线路,以及流过变压器中性点的直流电流和系统故障时流过变压器中性点的故障电流较大的情况,采用变压器中性点串电容来抑制直流电流是较好的方法[14]。目前,在