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微电网核心技术体系研究 被引量:2

Research on Miro-Grids' Core Technology System
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摘要 根据"微电网技术体系研究"的研究成果,从宏观角度介绍了微电网的定义、内涵;从微观角度给出了微电网的关键核心技术和理论框架。针对微电网所涵盖的计算与仿真技术、规划设计技术、电源技术、储能技术、运行控制技术、保护技术、接地技术、信息与通信技术、能量与管理技术、可靠性技术和电能质量技术,通过分析技术需求,提出了需要研究的核心技术和关键装备。 Based on the achievements of micro-grid technology system research, this paper introduced the micro-grid definition and connotation from macroscopic view, and the micro-grid' s key technology and theoretical framework from microscopic view. In terms of compuation and simulation technology, planning and design technology, power supply technology, energy storage technology, operation control technology, protection technology, grounding technology, information and communication technology, energy and management technology, reliability technology and power quality technology which are covered by micro-grid ,the paper proposed the core technologies and key equipments by analyzing the technology demands.
作者 李澍森
出处 《电器与能效管理技术》 2014年第10期18-23,共6页 Electrical & Energy Management Technology
关键词 微电网 分布式电源 电源技术 储能技术 运行控制技术 信息与通信技术 能量与管理技术 电能质量 micro-grid distributed generation power supply technology energy storage technology operation control technology information and communication technology energy and management technology power quality
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  • 1江南,龚建荣,甘德强.考虑谐波影响的分布式电源准入功率计算[J].电力系统自动化,2007,31(3):19-23. 被引量:51
  • 2毕玥.电力系统电压暂降成因辨识[D].武汉:武汉大学,2012.
  • 3LMIEUX G. Power system harmonic resonance: adocumented case [ J ]. IEEE Transactions on Industry Applications, 1990,26(3 ) :483-488.
  • 4PAPATHANASSIOU S A, PAPADOPOULOS M P. Harmonic analysis in a power system with wind generation[J]. IEEE Transactions on Power Delivery, 2006,21 (4) :2006-2016.
  • 5CARPINELLI G, ESPOSITO T, VARILONE P, et al. First-order probabilistic harmonic power flow [ J ]. IEE Proceedings : Generation, Transmission and Distribution ,2001,148 ( 6 ) .541-548.
  • 6RUSSO A, VARILONE P, CARAMIA P. Point estimate schemes for probabilistic harmonic power flow [ C ]// Harmonics and Quality of Power (ICHQP). Bucharest: IEEE, 2014: 19-23.
  • 7YU H, CHUNG C Y, WONG K P, et al. Probabilistic load flow valuation with hybrid Latin Hypercube sampling and Cholesky decomposition [ J ]. IEEE Trans on Power Systems,2009,24(2) :661-667.
  • 8MLRALES J M, BARINGO L, CONEJO A J, et al. Probabilistic power flow with correlated wind sources [ J ]. IET Proceedings on Generation, Transmission and Distribution,2010,4(5) :641-651.
  • 9SU C L. Probabilistic load-flow computation using point estimate method [ J ]. IEEE Trans on Power Systems ,2005,20(4) : 1843-1851.
  • 10SCHELLENBERG A, ROSEHART W, AGUADO J. Introduction to cumulant based probabilistic optimal power flow[ J ]. IEEE Trans on Power Systems,2005, 20(2) :1184-1186.

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