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基于虚拟同步发电机的光伏并网系统及仿真分析 被引量:5

Grid-connected Photovoltaic Based on Virtual Synchronous and Simulation Analysis
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摘要 以三相光伏并网发电系统作为研究对象,并采用一种先进的控制策略即虚拟同步发电控制技术,该控制技术基于模拟同步发电机运行的思想,使得光伏并网系统具有同步发电机的外特性.本文首先建立光伏发电单元数学模型,然后建立虚拟同步发电机的数学模型,再在Matlab仿真软件中建立光伏并网发电系统结构,同时建立虚拟同步发电机控制仿真模块,最后通过仿真验证基于虚拟同步发电技术的光伏并网系统可行性. An advanced control strategy is proposed on the basis of the three-phase grid-connected photovoltaic(PV) systems,which is virtual synchronous generator,making grid-connected PV systems possess external characteristic of the synchronous generator based on the idea for operation of mimic synchronous generator.Firstly,a mathematical model of photovoltaic power generation is established,and then a mathematical model of virtual synchronous generator is created,and lastly photovoltaic power generation system structure is built on Matlab simulation software platform,while a simulation control module of virtual synchronous generator is also set up.Finally,feasibility of grid-connected photovoltaic based on virtual synchronous is verified by simulation results.
出处 《湖南师范大学自然科学学报》 CAS 北大核心 2013年第3期27-32,共6页 Journal of Natural Science of Hunan Normal University
基金 国家自然科学基金资助项目(50907017)
关键词 虚拟同步发电机 光伏并网 最大功率点跟踪 MATLAB仿真 virtual synchronous generator grid-connected photovoltaic maximum power point tracking Matlab simulation
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  • 1Hua Chihchiang,Shen Chihming.Study of maximum power tracking techniques and control of DC/DC converters for photovoltaic power system[A].The 29th IEEE Annual Conference on Power Electronics Specialists[C],1998,86-93.
  • 2Hua Chihchiang,Lin Jongrong,Shen Chihming.Implementation of a DSP-controlled photovoltaic system with peak power tracking[J].IEEE Transactions on Industrial Electronics,1998,45(1):99-107.
  • 3Yu G J,Jung Y S,Choi J Y,et al.A novel two-mode MPPT control algorithm based on comparative study of existing algorithms[A].The 29th IEEE Conference on Photovoltaic Specialists[C],2002,1531-1534.
  • 4Noguchi T,Togashi S,Nakamotob R.Short-current pulsebased maximum-power-point tracking method for multiple photovoltaic-and-converter module system[J].IEEE Transactions on Industrial Electronics,2002,49(1):217-223.
  • 5Noguchi T,Togashi S,Nakamoto R.Short-current pulse based adaptive maximum-power-point tracking for photovoltaic power generation system[A].IEEE International Symposium on Industrial Electronics[C],2000,157-162.
  • 6Hohm D P,Ropp M E.Comparative study of maximum power point tracking algorithms using an experimental,programmable,maximum power point tracking test bed[A].28th IEEE Conference on Photovoltaic Specialists[C],2000,1699-1702.
  • 7Brambilla A,Gambarara M,Garutti A,et al.New approach to photovoltaic arrays maximum power point tracking[A].30th IEEE Annual Conference on Power Electronics Specialists[C],1999,632-637.
  • 8Kuo Yeong-Chau,Liang Tsomg-Juu,Che Jiann-Fuh.A highefficiency single-phase three-wire photovoltaic energy conversion system[J].IEEE Transactions on Industrial Electronics,2003,50(1):116-122.
  • 9Jain S,Agarwal V.A new algorithm for rapid tracking of approximate maximum power point in photovoltaic systems[J].IEEE Power Electronics Letters,2004,2(1):16-19.
  • 10Xiao Weidong,Dunford W G.A modified adaptive hill climbing MPPT method for photovoltaic power pystems[A].35th IEEE Annual Conference on Power Electronics Specialists[C],2004,1957-1963.

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  • 1毛六平,王耀南.混合动力汽车能源总成控制系统的研究[J].湖南师范大学自然科学学报,2005,28(2):33-36. 被引量:1
  • 2吴理博,赵争鸣,刘建政,王健,刘树.单级式光伏并网逆变系统中的最大功率点跟踪算法稳定性研究[J].中国电机工程学报,2006,26(6):73-77. 被引量:159
  • 3SHENGNAN S,PIPATTANASOMPOM M,RAHMAN S. Challenges of phev penetration to the residential distributio-n network[A].Alberta,Canada:IEEE,2009.1-8.
  • 4CAO Y J,TANG S W,LI C B. An optimized ev charging model considering tou price and soc curve[J].IEEE Trans Smart Grid,2012,(01):388-393.
  • 5SANCHEZ-MARTIN P,SANCHEZ G,MORALES-ESPANA G. Direct load control decision model for aggregated ev charging points[J].{H}IEEE Transactions on Power Systems,2012,(03):1577-1584.
  • 6CLEMENT-NYNS K,HAESEN E,DRIESEN J. The impact of charging plug-In hybrid electric vehicles on a residential distribu-tion grid[J].{H}IEEE Transactions on Power Systems,2010,(01):371-380.
  • 7SHENGNAN S,PIPATTANASOMPORN M,RAHMAN S. Demand response as a load shaping tool in an intelligent grid with electric vehicles[J].IEEE Trans Smart Grid,2011,(04):624-631.
  • 8ZHANG P,QIAN K J,ZHOU C K. A methodology for optimization of power systems demand due to electric vehicle charging load[J].{H}IEEE Transactions on Power Systems,2012,(03):1628-1636.
  • 9SHAO S N,ZHANG T S,PIPATTANASOMPORN M. Impact of tou rates on distribution load shapes in a smart grid with phev penetration[A].New Orleans,USA:IEEE,2010.1-6.
  • 10HATZIARGYRIOU N,KARAKATSANIS T,PAPADOPOULOS M. Probabilistic load flow in distribution systems containing dispersed wind power generation[J].{H}IEEE Transactions on Power Systems,1993,(01):159-165.

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