期刊文献+

直流配电网研究现状与展望 被引量:476

Research Status and Developing Prospect of DC Distribution Network
下载PDF
导出
摘要 相较交流配电网,直流配电网具有供电容量大、线路损耗小、电能质量好、无需无功补偿,以及适于各类电源和负载接入等优点。较为详细地论述了直流配电(相对交流配电)的特点、优势及其网络的整体概念,提出了直流配电网的拓扑结构,总结了直流配电网在规划设计、调度控制、继电保护及关键设备等方面的研究情况,最后指出了直流配电网优化调度、故障诊断与定位、直流断路器等尚需深入研究的问题。 In contrast to the AC distribution network, the DC distribution network has higher power supply capability, lower line losses, better power quality, freedom from reactive compensation, and is suitable for all kinds of power supply (including renewable energy power) and load access, etc. This paper deals with the DC distribution (relative to the AC distribution) characteristics, its advantages and overall concept in detail; puts forward its network topology structure; and summarizes the network planning design, dispatching control, relay protection, key equipment, and other aspects of the research. Finally, it is pointed out that the DC distribution network optimization dispatching, fault diagnosis and location, DC breaker, etc, are problems for further study.
作者 江道灼 郑欢
出处 《电力系统自动化》 EI CSCD 北大核心 2012年第8期98-104,共7页 Automation of Electric Power Systems
关键词 直流配电 调度控制 故障诊断与定位 直流断路器 DC distribution dispatching control fault diagnosis and location DC breaker
  • 相关文献

参考文献34

  • 1HAMMERSTROM D J. AC versus DC distribution systems did we get it right[C]//Proceedings of IEEE Power Engineering Society General Meeting, -June 24-28, 2007, Tampa, FL, USA= 1 5.
  • 2STARKE M R, OLBERT L M, OZPINECI B. AC vs. DC distribution: a loss comparison[C]// Proceedings of IEEE/PES Transmission and Distribution Con{erence and Exposition, April 21-24, 2008, Chicago, IL, USA~ 1-7.
  • 3STARKE M, LI F X, TOLBERT L M, et al. AC vs. DC distribution: maximum transfer capability[C]// Proceedings of IEEE Power and Energy Society General Meeting--Conversion and Delivery of Electrical Energy in the 21st Century, July 20 24, 2008, Pittsburgh, PA, USA: 1 6.
  • 4DASTGEER F, KALAM A. Efficiency comparison of DC and AC distribution systems for distributed generation [C]// Proceedings of Australasian Universities Power Engineering Conference, September 27-30, 2009, Adelaide, SA, Australia:.
  • 5MUSOLINO 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]//Proceedings of 14th International Conference on Harmonics and Quality of Power, September 26-29, 2010, Bergamo, Italy: 1-6.
  • 6汤广福.基于电压源换流器的高压直流输电技术[M].北京:中国电力出版社,2009.
  • 7WANG F, PEI Y Q, BOROYEVICH D, et al. AC vs. DCdistribution for off-shore power delivery[C]// Proceedings of IEEE 34th Annual Conference, November 10-13, 2008, Orlando, FL, USA.- 2113-2118.
  • 8PANG H, LO E, PONG B. DC electrical distribution systems in buildings [C]// Proceedings of the 2nd International Conference on Power Electronics Systems and Applications, November 12-14, 2006, Hong Kong, China: 115-119.
  • 9NILSSON 'D, SANN1NO A. Efficiency analysis of low-and medium-voltage DC distribution systems[C]// Proceedings of IEEE Power Engineering Society General Meeting, June 10, 2004, Denver, CO, USA: 1-7.
  • 10SITHIMOLADA V, SAUER P W. Facility-level DC vs. typical AC distribution for data eenters[C]// Proceedings of 2010 IEEE Region 10 Conference, November 21-24, 2010, Fukuoka, Japan~ 2102 2107.

二级参考文献23

  • 1周雪松,向龙瑞,马幼捷,徐晓宁.故障限流装置的发展和应用[J].电工技术学报,2004,19(11):1-7. 被引量:53
  • 2庄劲武,张晓锋,杨锋,王晨.船舶直流电网短路限流装置的设计与分析[J].中国电机工程学报,2005,25(20):26-30. 被引量:68
  • 3Kishida Y, Koyama K, Sasao H, et al. Development of the High Speed Switch and Its Application[A]. in:Industry Applications Conference,1998,Thirty-third IAS Annual Meeting[C]. St.Louis(USA):1998.2321- 2328.
  • 4Netal W.Solid-state 13 kv Distribution Class Circuit Breaker[A]. in:planning, Development and Demonstration Fourth International Conference on Trends in Distribution Switch-gear[C]. 1994. 163-167.
  • 5BAEK Ju-won, YOO Dong-wook, KIM Heung-geun. High-voltage Switch using Series-connected IGBTs with Simple Auxiliary Circuit[J].IEEE Trans on Industry Applications, 2001,37(6) : 1832 - 1839.
  • 6Palav L, Gole A M. On Using the Solid State Breaker in Distribution Systems[A]. in: IEEE Canadian Conference on Electrical and Computer Engineering[C].Waterloo (Canada): 1998.693-696.
  • 7XU Zhen-xue, 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.
  • 8Smith R K, Slade P G, Sarkozi M, et al. Solid-state Distribution Current Limiter and Circuit Breaker Application Requirement and Control Strategies [J].IEEE Trans PWRD, 1993, 8 (3): 1155-1164.
  • 9Power A J. An Overview of Transmission Fault Current Limiters[A].in: IEE Power Division Colloquium on Fault Current Limiters: a Look at Tomorrow[C]. 1995.
  • 10Leung E M W, Albert G W, Dew M, et al. High Temperature Superconducting Fault Current Limiter for Utility Applications[J]. Proceedings of International Workshop on Fault Current Limiters, 1995.

共引文献85

同被引文献3751

引证文献476

二级引证文献4440

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部