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基于潮流计算的环形直流微电网母线电压协调控制策略研究 被引量:3

Voltage coordinated control method of ring-bus DC microgrid based on tide calculation
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摘要 针对现有的基于直流母线电压信号的传统控制方法在不同的工作模式运行时存在电压控制偏差的问题,首先对现有的分层控制策略进行了改进,通过潮流计算确定了本地控制器参数,并以负荷端电压为控制目标,实现了将不同模式下的负荷端电压均控制在相同的参考值上;然后,利用仿真软件搭建了四端环形直流微电网及其控制算法的模型,并对不同模式间的切换进行了仿真分析,仿真分析结果验证了该策略的可行性和有效性。 In order to solve the problem of deviation of voltage control of traditional control method based on dc bus voltage signal which is used under different working models, the now used hierarchical control strategy is improved, and the local parameters of controller are derived by tide calculation and the load voltage is controlled on the same value in different mode while it is looked as the control target. By using simulation software, a four terminal ring dc microgrid and its control algorithm is set up, and the switch process between different modes is simulated. The simulation results verfiry the feasibility and effectiveness of the proposed method.
出处 《海军工程大学学报》 CAS 北大核心 2017年第1期5-11,34,共8页 Journal of Naval University of Engineering
基金 国家自然科学基金资助项目(51207164 51307178)
关键词 环形直流微电网 协调控制 分层控制 自动切换 潮流计算 DC ring-bus microgrid coordinated control hierarchical control automatically switch tide calculaiton
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  • 1Kakigano 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.
  • 2Marnay 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.
  • 3Barnes 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.
  • 4Fred C Lee. Sustainable Buildings and Nanogrids[EB/ OL]. http://www.cpes.vt.edu/publications/proceedings/ conference/2010/index.php, 2010.
  • 5Mark Mc Granaghan, Thomas Ortmeyer,. David Crudele, et al. Renewable systems interconnection study: advanced grid planning and operations[R]. Sandia National Laboratories, 2008.
  • 6My Ton, Brian Fortenbery Data Center Efficiency DC Power for Improved [R/OL]. http://hightech. lbl.gov/dc-powering/, 2008.
  • 7Ciezki 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.
  • 8Chun 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.
  • 9Emadi 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.
  • 10Miller J M, Emadi A, Rajarathnam A V, et al. Current status and future trends in more electric car power systems[C]. IEEE Vehicular Technology Conference,Houston, TX, USA, 1999, 2: 1380-1384.

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