General architecture of distributed energy network system

被引:0
|
作者
机构
[1] Zhu, Xiaojun
[2] Zhu, Jianhua
[3] Zhu, Zhenqi
[4] Li, Hongxia
[5] Gan, Zhongxue
来源
Gan, Zhongxue (zhongxuegan@126.com) | 1600年 / Chinese Academy of Sciences卷 / 62期
关键词
Electric power transmission networks - Network architecture - Computation theory - Computer architecture - Information services - Economics - Smart power grids - Big data - Energy efficiency - Energy management systems - Population statistics - Energy management - Urban growth - Natural gas;
D O I
10.1360/N972017-00442
中图分类号
学科分类号
摘要
The exponential growth of urban populations often causes conflict between diminishing energy resources and environmental pollution, hence restricting economic development. As individuals, government agencies and businesses voice their concerns, distributed energy networks promise to provide an essential means to resolve these issues. Within China, the demand for modern distributed energy networks is gaining political and scientific support; however, due to variable end user demands and operating conditions, such energy management systems demand extensive maintenance, require extensive economic investment cost coupled with operational inefficiency. Advanced distributed energy networks are intelligence-based systems developed to integrate multiple power grids and information networks, overcoming current barriers to improve the overall efficiency and economic viability of regional energy infrastructures. Complex distributed energy networks combine advanced energy technologies with micro grids, the internet of things, cloud computing and big data analysis. Fundamentally, the publication describes distributed energy systems from its technical architecture to its primary characteristics while expanding upon its critical components: the four stage design method for energy loops, distributed network nodes, a summary of cooperative control methods and our system efficiency theory for distributed energy networks and its challenges. The first issue involves system infrastructure organization, impacting overall energy efficiency, focusing upon topology influence and stability integration with renewable energy and natural gas units. The second challenge involves quality increments and circulation principles among distributed energy networks, focusing upon active regulation and supply-demand interaction. The final problem is cooperative control principles based upon information and energy integration. The issues involving the four stages energy loop for distributed network nodes was resolved in Hebei Province eco-city and the Sino German Eco-Park in Shandong province. In these domestic level projects, distributed energy networks demonstrated full renewable energy and natural gas optimization, overcoming the conflict between peak energy demand and environmental protection. This demonstration project illustrated the feasibility of advanced distributed energy in China, coupling information and the potential of distributed energy networks as a foundation for energy internet development. © 2017, Science Press. All right reserved.
引用
收藏
相关论文
共 50 条
  • [31] A Resilient and Distributed Cabin Network Architecture
    Hanka, Oliver
    Kuntze, Nicolai
    Shaw, David
    [J]. 2014 IEEE/AIAA 33RD DIGITAL AVIONICS SYSTEMS CONFERENCE (DASC), 2014,
  • [32] Economic and Environmental Optimization for Distributed Energy System Integrated with District Energy Network
    Li, Miao
    Feng, Yiran
    Zhou, Maojun
    Mu, Hailin
    Li, Longxi
    Wang, Yajun
    [J]. ENERGIES, 2019, 12 (10):
  • [33] An architecture of a distributed semantic social network
    Tramp, Sebastian
    Frischmuth, Philipp
    Ermilov, Timofey
    Shekarpour, Saeedeh
    Auer, Soeren
    [J]. SEMANTIC WEB, 2014, 5 (01) : 77 - 95
  • [34] MODELING AND OPTIMAL OPERATION OF A NETWORK OF ENERGY HUBS SYSTEM WITH DISTRIBUTED ENERGY RESOURCES
    Ma, Shixi
    Zhou, Dengji
    Zhang, Huisheng
    Lu, Zhenhua
    [J]. PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2017, VOL 3, 2017,
  • [35] EVALUATTED MODEL OF THE DISTRIBUTED ENERGY NETWORK SYSTEM OF AN URBAN DISTRICT
    Ishida, Takeshi
    [J]. PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON POWER ENGINEERING 2009 (ICOPE-09), VOL 2, 2009, : 377 - 382
  • [36] OSone: A Distributed Operating System for Energy Efficient Sensor Network
    Pasztor, Bence
    Hui, Pan
    [J]. 2013 25TH INTERNATIONAL TELETRAFFIC CONGRESS (ITC), 2013,
  • [37] Research on Network Loss of Distributed Energy Integration into Power System
    Xu, Qingfeng
    Gao, Peng
    Chao, Tong
    [J]. 2020 INTERNATIONAL SYMPOSIUM ON ENERGY ENVIRONMENT AND GREEN DEVELOPMENT, 2021, 657
  • [38] Network Controlled Distributed Energy Management System for Smart Cities
    Singh, Abhishek K
    Kumar, Anuj
    Kumar, Ashok
    [J]. 2016 2ND INTERNATIONAL CONFERENCE ON COMMUNICATION CONTROL AND INTELLIGENT SYSTEMS (CCIS), 2016, : 235 - 238
  • [39] A DISTRIBUTED SYSTEM ARCHITECTURE FOR A DISTRIBUTED APPLICATION ENVIRONMENT
    BAUER, MA
    COBURN, N
    ERICKSON, DL
    FINNIGAN, PJ
    HONG, JW
    LARSON, PA
    PACHL, J
    SLONIM, J
    TAYLOR, DJ
    TEOREY, TJ
    [J]. IBM SYSTEMS JOURNAL, 1994, 33 (03) : 399 - 425
  • [40] Distributed general logging architecture for Grid environments
    De Alfonso, Carlos
    Caballer, Miguel
    Carrion, Jose V.
    Hernandez, Vicente
    [J]. HIGH PERFORMANCE COMPUTING FOR COMPUTATIONAL SCIENCE - VECPAR 2006, 2007, 4395 : 589 - +