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直流配网线路供电能力分析 被引量:16

Power Supply Capability of Line in DC Distribution Network
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摘要 随着用电负荷密度逐步增大及大量分布式电源的接入,目前配电网面临着供电能力不足的问题。直流配电网供电容量、线路损耗、各类电源与负荷接入适应性等方面与交流配电网络均有差别。通过对交流供电线路供电能力的分析,推导出直流供电线路在不同约束条件下的供电能力的计算模型,并在假设的不同电压等级及典型负荷分布形式下,分别对常用导线进行了负荷矩与供电距离的比较。由分析可知在计算供电线路供电能力时电压约束和线路损耗约束在交、直流系统中所起作用不同,提出交、直流配电网络线路供电能力计算选取依据,为今后的研究提供参考。 With the gradually increase of electricity load density and the accessing of a large number of distributed generation, the current distribution network is faced with the problem of insufficient power supply capability. The DC distribution network is different from the AC distribution network in many aspects, such as power supply capacity, line losses, the adaptability for all kinds of power and load accessing, etc. Through the analysis on the power supply capability of AC line, this paper derived the power supply capability calculation model of DC line under different constraints, and compared the load moment and supply distance of commonly used wires under the assumed different voltage levels and typical load distribution patterns. It is concluded that, when calculating the power supply capability, the voltage constraints and line losses constraints play a different role in AC and DC systems. Finally, the selection basis was proposed for the calculation of the power supply capability of power line in AC and DC distribution network, which could provide a reference for the far-reaching research in future.
出处 《电力建设》 2014年第7期80-85,共6页 Electric Power Construction
基金 国家电网公司科技项目(直流配电方式的可行性研究)
关键词 供电能力 交流供电线路 直流供电线路 约束条件 power supply capability AC power line DC power line constraints
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参考文献20

  • 1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. 被引量:482
  • 2谭逢时.未来直流配电网建设初探[J].科技资讯,2011,9(23):110-110. 被引量:8
  • 3Hammerstrom D J.AC versus DC distribution systems-did we get it right[C]//Proceedings of IEEE Power Engineering Society General Meeting,2007,Tampa,FL,USA:1-5.
  • 4Starke 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,2008,Pittsburgh,PA,USA:1-6.
  • 5Starke M R,Olbert L M,Ozpinect B.AC vs.DC distribution:a loss comparison[C]//Proceedings of IEEE/PES Transmission and Distribution Conference and Exposition,April 21-24,2008,Chicago,IL,USA:1-7.
  • 6Amin M,Arafat Y,Lundberg S,et al.Low voltage DC distribution system compared with 230 V AC[C]// Proceedings of Electrical Power and Energy Conference (EPEC),2011,Winnipeg,MB:340-345.
  • 7Ssnnino A,Postiglione G,Bollen M H J.Feasibility of a DC network for commercial facilities[J].IEEE Transactions on Industry Applications,2003,39(5):1499-1507.
  • 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,2006,Hong Kong,China:115-119.
  • 9Nilsson D,Sannino A.Efficiency analysis of low-and-medium-voltage DC distribution systems[C]// Proceedings of IEEE Power Engineering Society General Meeting,2004,Denver,CO,USA:1-7.
  • 10Dastgeer F,Kalam A.Efficiency comparison of DC and AC distribution systems for distributed generation[C]// Proceedings of Australasian Universities Power Engineering Conference,2009,Adelaide,SA,Australia:1-5.

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