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新型低压直流供电系统的电气安全性能探讨 被引量:11

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摘要 新型低压直流供电系统不同于传统的交流供电系统,为明确该系统的电气安全性能,参照IEC的相关标准,给出了直流电击的室颤电流计算公式,制定了直流电的安全阈值曲线,给出了直流安全电压。在此基础上,分析对比了基于整流装置的DC220V、DC311V系统各接地形式的电击防护性能。结果表明,直流电比交流电更具安全性,负极接地的直流TT系统在保障电击防护性能的同时,也满足了可靠性与绝缘监测灵敏性,是未来民用建筑直流供电系统更适宜的接地形式选择。
作者 李露露 雍静
出处 《现代建筑电气》 2013年第S1期75-79,共5页 Modern Architecture Electric
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参考文献9

  • 1雍静,徐欣,曾礼强,李露露.低压直流供电系统研究综述[J].中国电机工程学报,2013,33(7):42-52. 被引量:110
  • 2吴卫民,何远彬,耿攀,钱照明,汪槱生.直流微网研究中的关键技术[J].电工技术学报,2012,27(1):98-106. 被引量:297
  • 3伍家驹,王祖安,刘斌,况清龙,杉本英彦.Four-dimensional Visual Analysis and Design Optimization of LC Filters at DC Side of Single-phase Diode Rectifiers[J].中国电机工程学报,2011,31(36). 被引量:8
  • 4D. SALOMONSSON,A. SANNINO.Low-Voltage DC Distribution System for CommercialPower Systems with Sensitive Electronic Loads[].IEEE Transactions on Power Delivery.2007
  • 5Effects of current on human beings and livestock-Part1:General aspects. IEC TS60479-1 . 2005
  • 6YASUNOBU Y,DOAA M Y,DAISUKE I,et al.Power consumption pattern analysis of home appliances for dc-based green smart home[].IEEE Transactions on Power and Energy.2010
  • 7Electtrical installation guide-Part413:protection against indirect contact-automatic disconnection of supply. IEC61200-413 . 1996
  • 8Mǒrx.Touch voltages for direct current(improved and refined edition of document64/MT17)[]..2012
  • 9Low-voltage electrical installations-part1:fundamental principles,assessment of general characteristics,definitions. IEC60364-1 . 2005

二级参考文献89

  • 1方雄伟,吴宏.直流低压网络智能化管理系统[J].船舶,2006,17(4):24-27. 被引量:3
  • 2Kakigano H, Miura Y, Ise T, et al. Fundamental characteristics of DC micro-grid for residential houses with cogeneration system in each house[C]. 2008 IEEE Power and Energy Society General Meeting--Conversion and Delivery of Electrical Energy in the 21st Century, Pittsburgh, PA, USA, 2008: 1-8.
  • 3Marnay C, Robio F J, Siddiqui A S. Shape of the micro-grid[C]. IEEE Power Engineering Society Winter Meeting, Columbus, OH, USA, 2001, 1: 150-153.
  • 4Barnes M, Ventakaramanan G, Kondoh J, et al. Real- world micro-grids-an overview[C]. IEEE International Conference on System of Systems Engineering, San Antonio, TX, USA, 2007: 1-8.
  • 5Fred C Lee. Sustainable Buildings and Nanogrids[EB/ OL]. http://www.cpes.vt.edu/publications/proceedings/ conference/2010/index.php, 2010.
  • 6Mark Mc Granaghan, Thomas Ortmeyer,. David Crudele, et al. Renewable systems interconnection study: advanced grid planning and operations[R]. Sandia National Laboratories, 2008.
  • 7My Ton, Brian Fortenbery Data Center Efficiency DC Power for Improved [R/OL]. http://hightech. lbl.gov/dc-powering/, 2008.
  • 8Ciezki J G, Ashton R W. Selection and stability issues associated with a navy shipboard DC zonal electric distribution system[J]. IEEE Transactions on Power Delivery, 2000, 15(2): 665-669.
  • 9Chun Lien Su, Chun Teng Yeh. Probabilistic security analysis of shipboard DC zonal electrical distribution systems[C]. IEEE Power and Energy Society General Meeting, 2008:1-7.
  • 10Emadi K, Ehsani M. Aircraft power systems: technology, state of the art, and future trends[J]. IEEE Aerospace and Electronic Systems Magazine, 2000, 15(1): 28-32.

共引文献392

同被引文献93

  • 1直流家电技术与发展前景[J].家电科技,2009(22):48-49. 被引量:12
  • 2高小平.中国智能家居的现状及发展趋势[J].低压电器,2005(4):18-21. 被引量:133
  • 3SULZBERGE C L. Triumph of AC-from Pearl Street to Niagara[J].IEEE Power & Energy Magazine,2003,(03):64-67.
  • 4SALAMONSSON D,SANNINO A. Low-voltage dc distribution system for commercial power systems with sensitive electronic loads[J].{H}IEEE Transactions on Power Delivery,2007,(03):1620-1627.doi:10.1109/TPWRD.2006.883024.
  • 5CIEZKI J G,ASHTON R W. Selection and stability issues associated with a navy shipboard dc zonal electric distribution system[J].{H}IEEE Transactions on Power Delivery,2000,(02):665-669.
  • 6YOKOMIZU Y,YEHIA D M,IIOKA D. Formulated representation for upper limitation of deliverable power in low-voltage dc distribution system[J].IEEE Transactions on Power and Energy,2011,(04):362-368.
  • 7KAKIGANO H,NISHINO A,MIURA Y. Distribution voltage control for dc microgrid by converters of energy storages considering the stored energy[A].Piscataway:IEEE Press,2011.2851-2856.
  • 8SALAMONSSON D,SODER L,SANNINO A. Protection of low-voltage dc microgrids[J].{H}IEEE Transactions on Power Delivery,2009,(03):1045-1053.
  • 9KAKIGANO H,MIURA Y,ISE T. Low-voltage bipolar-type DC microgrid for super high quality distribution[J].{H}IEEE Transactions on Power Electronics,2010,(12):3066-3075.
  • 10YASUNOBU Y,DOAA M Y,DAISUKE I. Power consumption pattern analysis of home appliances for dcbased green smart home[J].IEEE Transactions on Power and Energy,2010,(04):362-368.

引证文献11

二级引证文献41

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