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Network security protection technology for a cloud energy storage network controller

Network security protection technology for a cloud energy storage network controller
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摘要 As part of the ongoing information revolution,smart power grid technology has become a key focus area for research into power systems.Intelligent electrical appliances are now an important component of power systems,providing a smart power grid with increased control,stability,and safety.Based on the secure communication requirements of cloud energy storage systems,this paper presents the design and development of a node controller for a cloud energy storage network.The function division and system deployment processes were carried out to ensure the security of the communication network used for the cloud energy storage system.Safety protection measures were proposed according to the demands of the communication network,allowing the system to run safely and stably.Finally,the effectiveness of the system was verified through a client-side distributed energy storage demonstration project in Suzhou,China.The system was observed to operate safely and stably,demonstrating good peak-clipping and valley filling effects,and improving the system load characteristics. As part of the ongoing information revolution,smart power grid technology has become a key focus area for research into power systems.Intelligent electrical appliances are now an important component of power systems,providing a smart power grid with increased control,stability,and safety.Based on the secure communication requirements of cloud energy storage systems,this paper presents the design and development of a node controller for a cloud energy storage network.The function division and system deployment processes were carried out to ensure the security of the communication network used for the cloud energy storage system.Safety protection measures were proposed according to the demands of the communication network,allowing the system to run safely and stably.Finally,the effectiveness of the system was verified through a client-side distributed energy storage demonstration project in Suzhou,China.The system was observed to operate safely and stably,demonstrating good peak-clipping and valley filling effects,and improving the system load characteristics.
出处 《Global Energy Interconnection》 2020年第1期86-98,共13页 全球能源互联网(英文版)
基金 supported by the Technical Project of the State Grid Corporation of China(research and demonstration application of key technology of energy storage cloud for mobile energy storage application of electric vehicles 5419-201971217a-0-0-00)。
关键词 CLOUD ENERGY STORAGE system NODE CONTROLLER Network security Smart grid Distributed ENERGY STORAGE Cloud energy storage system Node controller Network security Smart grid Distributed energy storage
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  • 1张安安,杨洪耕.考虑电压稳定性的快速多目标无功优化方法[J].四川大学学报(工程科学版),2009,41(6):219-225. 被引量:2
  • 2张步涵,曾杰,毛承雄,金玉洁,王云玲.电池储能系统在改善并网风电场电能质量和稳定性中的应用[J].电网技术,2006,30(15):54-58. 被引量:228
  • 3余贻鑫.面向21世纪的智能配电网.南方电网技术研究,2006,2(6):14-16.
  • 4[1]方严军,孙健.智能电器技术及其应用[M].北京:化学工业出版社,2004.120~169.
  • 5Coalton Bennett, Darren Highfill. Networking AMI smart meters [C].//IEEE Energy 2030 Conference. 2008.
  • 6Choi Tae-Seop, Ko Kyung-Rok, Park Seong-Chan, et al. Analysis of energy savings using smart metering system and IHD (in-home display) [C]. //Transmission and Distribution Conference and Exposition. Asia and Pacific: 2009.
  • 7世界风能协会(word wind energy association,WWEA).2010年度世界风能发展[EB/OL].2011.http//www.wwindea.org/home/images/stories/Pdfs/WordwindenergyrepOrt10_c.pdf.
  • 8Kariniotakis G N, Stavrakakis G S, Nogaret E F. Wind power forecasting using advanced neural networks models [J]. IEEE Trans. on Energy Conversion, 1996, 11(4): 762-767.
  • 9Pinson P. Estimation of the uncertainty in wind power forecasting[D]. Paris: Ecole des Mines de Paris, 2006.
  • 10Pinson P, Juban J, Kariniotakisg N. On the quality and value of probabilistic forecast of wind generation[C]// Proceedings of the 9^th International Conference on Probabilistic Methods Applied to Power System. Stockholm, Sweden: ASME, 2006: 7.

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