全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
电网技术  2015 

基于IGBT串联技术的混合式高压直流断路器方案

DOI: 10.13335/j.1000-3673.pst.2015.09.017, PP. 2484-2489

Keywords: 直流断路器,直流转换开关,直流电网,拓扑结构

Full-Text   Cite this paper   Add to My Lib

Abstract:

大力发展可再生能源将是解决我国能源资源分布不平衡,电力供需紧张,实现经济可持续发展的必然选择。综合常规直流输电技术和柔性直流输电技术,建立高压直流电网将是解决大规模可再生能源并网问题的有效手段。回顾高压直流断路器的发展历程,介绍当前最新的研究成果,阐明现阶段高压直流断路器将要面临的挑战,分析比较不同类型高压直流断路器的典型拓扑结构、工作原理和优缺点。在此基础上提出一种基于绝缘栅双极型晶体管(insulatedgatebipolartransistor,IGBT)串联技术的混合式高压直流断路器方案,详细介绍其拓扑结构、特点和工作原理,基于舟山5端直流工程在PSCAD/EMTDC软件中搭建仿真模型验证了其可行性。

References

[1]  中华人民共和国国务院.国家中长期科学和技术发展规划纲要(2006—2020年)[J].中华人民共和国国务院公报,2006(9):7-37.State Council of the People's Republic of China.National outline for medium and long term S&T development[J].Gazette of the State Council of the People’s Republic of China,2006(9):7-37(in Chinese).
[2]  温家良,吴锐,彭畅,等.直流电网在中国的应用前景分析[J].中国电机工程学报,2012,32(13):7-12.Wen Jialiang,Wu Rui,Peng Chang,et al.Analysis of DC grid prospects in China[J].Proceedings of the CSEE,2012,32(13):7-12(in Chinese).
[3]  Kirby N M,Xu L,Luckett M,et al.HVDC transmission for large offshore wind farms[J].Power Engineering Journal,2002,16(3):135-141.
[4]  汤广福,罗湘,魏晓光.多端直流输电与直流电网技术[J].中国电机工程学报,2013,33(10):8-17.Tang Guangfu,Luo Xiang,Wei Xiaoguang.Multi-terminal HVDC and DC-grid technology [J].Proceedings of the CSEE,2013,33(10):8-17(in Chinese).
[5]  李亚楼,穆清,安宁,等.直流电网模型和仿真的发展与挑战[J].电力系统自动化,2014,38(4):127-135.Li Yalou,Mu Qing,An Ning,et al.Develop and challenge of modelling and simulation of DC grid[J].Automation of Electric Power Systems,2014,38(4):127-135(in Chinese).
[6]  Meyer C,Hoeing M,Peterson A,et al.Control and design of DC grids for offshore wind farms[J].IEEE Trans on Industry Applications,2007,43(6):1475-1482.
[7]  徐政,陈海荣.电压源换流器型直流输电技术综述[J].高电压技术,2007,31(1):1-10.Xu Zheng,Chen Hairong.Review and applications of VSC HVDC[J].High Voltage Engineering,2007,31(1):1-10(in Chinese).
[8]  Morton A B,Cowdroy S,Hill J R A,et al.AC or DC? economics of grid connection design for offshore wind farms[C]//The 8 th IEE International Conference on AC and DC Power Transmission.2006: 236-240.
[9]  张文亮,汤涌,曾南超.多端高压直流输电技术及应用前景[J].电网技术,2010,34(9):1-6.Zhang Wenliang,Tang Yong,Zeng Nanchao.Researches on UHVDC technology[J].Power System Technology,2010,34(9):1-6(in Chinese).
[10]  袁旭峰,程时杰.多端直流输电技术及其发展[J].继电器,2006,34(19):61-67.Yuan Xufeng,Cheng Shijie.Multi-terminal HVDC transmission technology and its development[J].Relay,2006,34(19):61-67(in Chinese).
[11]  Meyer C,Kowal M,De Doncker RW.Circuit breaker concepts for future high-power dc-application[C]// Proc. Rec. IEEE IAS Conf.Seattle:IEEE,2005:860-866.
[12]  邹刚.高压直流开关研究[D].北京:中国科学院电工研究所,1994.
[13]  Tokuyama S,Arimatsu K,Yoshioka Y,et al.Development and interrupting tests on 250 kV 8 kA HVDC circuit breaker[J].IEEE Trans on Power Apparatus and Systems,1985,104(9):2452-2459.
[14]  Pauli B,Mauthe G,Ruoss E,et al.Development of a high current HVDC circuit breaker with fast fault clearing capability[J].IEEE Trans on Power Delivery,1988,3(10):2072-2080.
[15]  Jürgen Häfner,Björn Jacobson.Proactive hybrid HVDC breakers - A key innovation for reliable HVDC grids [C]//CIGRE Session.Bologna,Italy:CIGRE,2011:1-9.
[16]  江道灼,张弛,郑欢,等.一种限流式混合直流断路器方案[J].电力系统自动化,2014,38(4):65-71.Jiang Daozhuo,Zhang Chi,Zheng Huan,et al.A scheme for current -limiting hybrid DC circuit breaker[J].Automation of Electric Power Systems,2014,38(4):65-71(in Chinese).
[17]  Vithayathil J J,Courts A L,Peterson W G,et al.HVDC circuit breaker development and field tests[J].IEEE Trans on Power Apparatus and Systems,1985,104(10):2693-2705.
[18]  贺开华.直流固态断路器的应用与仿真研究[J].船电技术,2012(10):40-42.He Kaihua.Application and simulation of the DC solid state circuit breaker[J].Marine Electric & Electronic Engineering,2012(10):40-42(in Chinese).
[19]  马钊.直流断路器的研发现状及展望[J].智能电网,2013(1):12-16.Ma Zhao.R&D status and prospects of HVDC circuit breakers[J].Smart Grid,2013(1):12-16(in Chinese).
[20]  吴方劼,马玉龙,梅念,等.舟山多端柔性直流输电工程主接线方案设计[J].电网技术,2014,38(10):2651-2657.Wu Fangjie,Ma Yulong,Mei Nian,et al.Design of main connection scheme for Zhoushan flexible multi-terminal HVDC transmission project[J].Power System Technology,2014,38(10):2651-2657(in Chinese).
[21]  周浩,沈扬,李敏,等.舟山多端柔性直流输电工程换流站绝缘配合[J].电网技术,2013,37(4):879-890.Zhou Hao,Shen Yang,Li Min,et al.Research on insulation coordination for converter stations of Zhoushan multi-terminal VSC-HVDC transmission project[J].Power System Technology,2013,37(4):879-890(in Chinese).
[22]  Xu Zhenxue,Zhang Bin,Sirisukprasert S,et al.The emitter turn-off thyristor-based DC circuit breaker[J].Power Engineering Society Winter Meeting,2002,8(1):288-293.
[23]  Franck C M.HVDC circuit breakers:a review identifying future research needs[J].IEEE Trans on Power Delivery,2011,26(2):998-1007.
[24]  Meyer C,Schroder S,De Doncker R W.Solid-state circuit breakers and current limiters for medium-voltage systems having distributed power systems[J].IEEE Trans on Power Electronics,2004,19(5):1333-1340.
[25]  魏晓光,高冲,罗湘,等.柔性直流输电网用新型高压直流断路器设计方案[J].电力系统自动化,2013,37(15):95-102.Wei Xiaoguang,Gao Chong,Luo Xiang,et al.A novel design of high-voltage DC circuit breaker in HVDC flexible transmission grid[J].Automation of Electrical Power System,2013,37(15):95-102(in Chinese).
[26]  宋国兵,蔡新雷,高淑萍,等.VSC-HVDC频变参数电缆线路电流差动保护新原理[J].中国电机工程学报,2011,31(22):105-111.Song Guobing,Cai Xinlei,Gao Shuping,et al.A new current differential protection principle of VSC-HVDC considering frequency-dependent characteristic of cable line[J].Proceedings of the CSEE,2011,31(22):105-111(in Chinese).

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133