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...

智能直流配电网研究综述

, PP. 9-19

Keywords: 分布式电源,直流配电,智能电网,系统架构,控制,保护

Full-Text   Cite this paper   Add to My Lib

Abstract:

随着电力电子技术的发展,相比交流配电网,直流配电网在很多领域取得了技术和经济优势,具有巨大的发展前景。首先对直流配电的发展历程、优势及运行特点等进行了论述和分析;在此基础上,介绍了直流配电网在一些发达国家的研究现状与发展情况。其次,对直流配电网研究中的系统架构、控制技术、保护技术等关键问题和相关研究现状进行了全面的阐述。最后,对直流配电网在中国的发展进行了介绍和展望。

References

[1]  鲁宗相,王彩霞,闵勇,等.微电网研究综述[J].电力系统自动化,2007,31(19):100-107.Lu Zongxiang,Wang Caixia,Min Yong,et al.Overview on microgrid research[J].Automation of Electric Power Systems,2007,31(19):100-107(in Chinese).
[2]  Lago J,Heldwein M L.Operation and control-oriented modeling of a power converter for current balancing and stability improvement of DC active distribution networks [J].IEEE Transactions on Power Electronics,2011,26(3):877-885.
[3]  Boroyevich D,Cvetkovic I,Dong D,et al.Future electronic power distribution systems:a contemplative view[C]//2010 12th International Conference on Optimization of Electrical and Electronic Equipment.Basov,Russia:IEEE,2010:1369-1380.
[4]  Baran M E,Mahajan N R.DC distribution for industrial systems: opportunities and challenges[J].IEEE Transactions on Power Electronics,2003,39(6):1596-1601.
[5]  Alex H,Mariesa L C,Gerald T H,et al.The future renewable electric energy delivery and management system: the energy internet[J].Proceedings of the IEEE,2011,99(1):133-148.
[6]  Ito Y,Zhong Y,Akagi H.DC microgrid based distribution power generation system[C]//2004 The 4th International Power Electronics and Motion Control Conference.Xi’an,China:IEEE,2004:1740-1745.
[7]  Kakigano H,Miura Y,Ise T.DC micro-grid for super high quality distribution system configuration and control of distributed generations and energy storage devices[C]// 2006 37th IEEE Power Electronics Specialists Conference.Jeju,Korea:IEEE,2006:1-6.
[8]  Kakigano H,Miura Y,Ise T.Low-voltage bipolar-type DC microgrid for super high quality distribution[J].IEEE Transactions on Power Electronics,2010,25(12):3066-3075.
[9]  Brenna M,Tironi E,Ubezio G.Proposal of a local dc distribution network with distributed energy resources[C]//2004 11th International Conference on Harmonics and Quality of Power.New York,USA:IEEE,2004:397-402.
[10]  Magureanu R,Albu M,Priboianu M,et al.A DC distribution network with alternative sources[C]//2007 Mediterranean Conference on Control and Automation.Athens,Greece:Mediterranean Control Association (MCA),2007:1-4(T26-018).
[11]  Bifaretti S,Zanchetta P,Watson A,et al.Advanced power electronic conversion and control system for universal flexible power management[J].IEEE Transactions on Smart Grid,2011,2(2):231-243.
[12]  Lee J,Han B.Operational characteristic analysis of dc micro-grid using detailed model of distributed generation [C]//2010 IEEE Transmission and Distribution Conference and Exposition.New Orleans,USA:IEEE,2010:1-8.
[13]  Wu T F,Sun K H,Kuo C L,et al.Predictive current controlled 5-kW single-phase bidirectional inverter with wide inductance variation for DC-microgrid applications[J].IEEE Transactions on Power Electronics,2010,25(12):3076-3084.
[14]  吴卫民,何远彬,耿攀,等.直流微网研究中的关键技术[J].电工技术学报,2012,27(1):98-107.Wu Weimin,He Yuanbin,Geng Pan,et al.Key technologies for DC micro-grids[J].Transactions of China Electrotechnical Society,2012,27(1):98-107(in Chinese).
[15]  Zhao B,Song Q,Liu W,et al.Characterization and application of next-generation SiC power devices for high-frequency isolated bidirectional dc-dc converter[C]// 2012 38th Annual Conference of IEEE Industrial Electronics.Montreal,Canada:IEEE,2012:280-285.
[16]  Zhao B,Song Q,Liu W.Efficiency characterization and optimization of isolated bidirectional DC-DC converter based on dual-phase-shift control for dc distribution application[J].IEEE Transactions on Power Electronics,2013,28(4):1711-1727.
[17]  赵彪,于庆广,王立雯,等.具有馈电功能的新型并网UPS系统及其分散逻辑控制策略[J].中国电机工程学报,2011,31(31):85-93.Zhao Biao,Yu Qingguang,Wang Liwen,et al.Novel grid-connected UPS system with the electricity feedback function and its distributed logic control strategy [J].Proceedings of the CSEE,2011,31(31):85-93(in Chinese).
[18]  Shigenori I,Hirofumi A.A bidirectional isolated DC-DC converter as a core circuit of the next-generation medium- voltage power conversion system[J].IEEE Transactions on Power Electronics,2007,22(2):535-542.
[19]  Liang Z,Guo R,Li J,et al.A high-efficiency PV module-integrated DC/DC converter for PV energy harvest in FREEDM systems[J].IEEE Transactions on Power Electronics,2011,26(3):897-909.
[20]  Fang Y,Ma X.A novel PV microinverter with coupled inductors and double boost topology[J].IEEE Transactions on Power Electronics,2010,25(12):3139-3147.
[21]  Li Q,Worlfs P.A review of the single phase photovoltaic module integrated converter topologies with three different dc link configurations[J].IEEE Transactions on Power Electronics,2008,23(03):1320-1333.
[22]  Shi J,Gou W,Yuan Hao,et al.Research on voltage and power balance control for cascaded modular solid-state transformer[J].IEEE Transactions on Power Electronics,2011,26(4):1154-1166.
[23]  She X,Huang A,Wang G.3-D space modulation with voltage balancing capability for a cascaded seven-level converter in a solid-state transformer[J].IEEE Transactions on Power Electronics,2011,26(12):3778-3789.
[24]  Yang L,Zhao T,Wang J,et al.Design and analysis of a 270kW five-level DC/DC converter for solid state transformer using 10kV SiC power devices[C]//2007 IEEE 38th IEEE Power Electronics Specialists Conference.Orlando,USA:IEEE,2007:245-251.
[25]  金一丁,宋强,刘文华.基于公共直流母线的链式可拓展电池储能系统及控制[J].电力系统自动化,2010,34(15):66-70.Jin Yiding,Song Qiang,Liu Wenhua.Control and analysis of extensible cascaded battery energy storage system based on a common dc bus[J].Automation of Electric Power Systems,2010,34(15):66-70(in Chinese).
[26]  赵彪,于庆广,孙伟欣.双重移相控制的双向全桥DC- DC变换器及其功率回流特性分析[J].中国电机工程学报,2012,32(12):43-50.Zhao Biao,Yu Qingguang,Sun Weixin.Bidirectional full bridge dc-dc converters with dual-phase-shifting control and its backflow power characteristic analysis [J].Proceedings of the CSEE,2012,32(12):43-50(in Chinese).
[27]  赵彪,于庆广,王立雯,肖宜.无主从自均流并联并网电池储能系统[J].电力系统自动化,2012,36(21):108-113.Zhao Biao,Yu Qingguang,Wang Liwen,et al.Parallel grid-connected system of non-master-slave and current sharing battery energy storage[J].Automation of Electric Power Systems,2012,36(21):108-113(in Chinese).
[28]  张庆海,彭楚武,陈燕栋,等.一种微电网多逆变器并联运行控制策略[J].中国电机工程学报,2012,32(25):126-133.Zhang Qinghai,Peng Chuwu,Chen Yandong,et al.A control strategy for parallel operation of multi-inverters in microgrid[J].Proceedings of the CSEE,2012,32(25):126-133(in Chinese).
[29]  阚志忠,张纯江,薛海芬,等.微网中三相逆变器无互连线并联新型下垂控制策略[J].中国电机工程学报,2011,31(33):68-74.Kan Zhizhong,Zhang Chunjing,Xue Haifen,et al.A novel droop control of three-phase inverters in wireless parallel operation in microgrid[J].Proceedings of the CSEE,2011,31(33):68-74(in Chinese).
[30]  Brabandere K D,Bolsens B,Keybus J V,et al.A voltage and frequency droop control method for parallel inverters[J].IEEE Transactions on Power Electronics,2007,22(4):1107-1115.
[31]  Magro M C,Mariscotti A,Pinceti P.Definition of power quality indices for DC low voltage distribution network [C]//2006 Instrumentation and measurement technology conference.Sorrento,Italy:IEEE,2006:1885-1888.
[32]  Musolino V,Piegari L,Tironi E,et al.Simulations and field test results for potential applications of LV dc distribution network to reduce flicker effect[C]//2010 14th International Conference on Harmonics and Quality of Power.Bergamo,Italy:IEEE,2010:1-6.
[33]  胡杰,王莉,穆建国.直流固态断路器现状及应用前景[J].电力系统保护与控制,2009,37(19):145-150.Hu Jie,Wang Li,Mu Jianguo.Present status of dc solid state circuit breaker and its potential application[J].Power System Protection and Control,2009,37(19):145-150(in Chinese).
[34]  Mu J,Wang L,Hu J.Research on main circuit topology for a novel dc solid state circuit breaker[C]//2010 5th IEEE Conference on Industrial Electronics and Applications.Taichung:IEEE,2010:926-930.
[35]  Kempkes M,Roth I,Gaudreau M.Solid state circuit breaker for medium voltage dc power[C]//2011 IEEE Electric Ship Technologies Symposium.Alexandria,USA:IEEE,2011:254-257.
[36]  Daniel S,Lennart S,Ambra S.Protection of low-voltage dc microgrids[J].IEEE Transactions on Power Delivery,2009,24(3):1045-1053.
[37]  Zhang L,Yang S,Cai L,et al.Reliability analysis of DC power distribution network based on minimal cut sets[C]//Proceedings of the 14th European Conference on Power Electronics and Applications.Birmingham,UK:EPE Association,2011:1-7.
[38]  Jin J,Allan J,Goodman C J,Payne K.Single pole-to-earth detection and location on a fourth-rail DC railway system [J].IEE Proceedings Electric Power Applications,2004,151(4):498-504.
[39]  Xu C D,Cheng K W E.A survey of distributed power system-AC versus DC distributed power system[C]//2011 4th International Conference on Power Electronics Systems and Applications.Hong Kong,China:IEEE,2011:1-12.
[40]  谭逢时.未来直流配电网建设初探[J].科技资讯,2011(23):110-112.Tan Fengshi.Construction discussion for the future dc distribution network[J].Science & Technology Information,2011(23):110-112(in Chinese).
[41]  Kondratiev I,Dougal R.Synergetic control strategies for shipboard DC power distribution systems[C]//American Control Conference.New York,USA:American Automatic Control Council (AACC),2007:4744-4749.
[42]  Lasseter R H.Smart distribution:coupled microgrids [J].Proceedings of the IEEE,2011,99(6):1074-1082.
[43]  江道灼,郑欢.直流配电网研究现状与展望[J].电力系统自动化,2012,36(8):98-104.Jiang Daozhuo,Zheng Huan.Research status and developing prospect of DC distribution network [J].Automation of Electric Power Systems,2012,36(8):98-104(in Chinese).
[44]  Stark M R,Tolbert L M,Ozpineci B.AC vs. DC distribution:a loss comparison[C]//2008 IEEE Transmission and Distribution Conference and Exposition.Bogota,Colombia:IEEE,2008:1-7.
[45]  Wang F,Pei Y,Boroyevich D,et al.AC vs. DC distribution for off-shore power delivery[C]//2008 34th Annual Conference of IEEE Industrial Electronics.Orlando,USA:IEEE,2008:2113-2118.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133