[go: up one dir, main page]
More Web Proxy on the site http://driver.im/ skip to main content
10.1145/3366030.3366036acmotherconferencesArticle/Chapter ViewAbstractPublication PagesiiwasConference Proceedingsconference-collections
research-article

Open Routed Energy Distribution Network based on a Concept of Energy Router in Smart Grid

Published: 22 February 2020 Publication History

Abstract

As the electricity generation is shifting to renewable energy sources (RES), the grid infrastructure faces multiple challenges, such as intermittency and volatility of a wide range RES. A high penetration of renewables requires profound changes to the current energy distribution system. The conventional grid is increasingly becoming a bottleneck for expanding the share of RES because of its rigid architecture, which is built around centralized energy source. We propose a new energy exchange model for a routed energy distribution system, which can perform electricity routing based on smart routing algorithms and presented protocols. We utilize a concept of an energy router device that controls energy flows and utilizes protocols stack to smartly route the energy between houses in the grid. This paper describes current results with several experimental networks of multiple houses interconnected through energy routers.

References

[1]
Marwali, M.N.; Dai, M.; Keyhani, A. (2006) Robust stability analysis of voltage and current control for distributed generation systems. IEEE Transactions on Energy Convers., 21, 516--526
[2]
Khayyer, P.; Özgüner, Ü. (2014) Decentralized Control of Large-Scale Storage-Based Renewable Energy Systems. IEEE Transactions on Smart Grid, 5, 1300--1307.
[3]
Rikiya Abe, Hisao Taoka, David McQuilkin (2011). Digital grid: Communicative Electrical Grids of the Future. IEEE Transactions on Smart Grid, 2(2), 399--410
[4]
Nguyen-Van, T.; Abe, R.; Tanaka, K. MPPT and SPPT Control for PV-Connected Inverters Using Digital Adaptive Hysteresis Current Control. Energies 2018, 11, 2075.
[5]
Tokoro, M. 2014. Sony CSL-OIST DC-based open energy system (DCOES). In Proceedings of the 1st International Symposium on Open Energy Systems (Okinawa, Japan, 2014), 64--67.
[6]
Werth, A., Kitamura, N., and Tanaka, K. 2015. Conceptual Study for Open Energy Systems: Distributed Energy Network Using Interconnected DC Nanogrids. IEEE Transactions on Smart Grid, vol. 6, no. 4, (Jul. 2015), 1621--1630.
[7]
T. Kaipia, P. Salonen, J. Lassila, and J. Partanen. Application of low voltage DC-distribution system: a techno-economical study. In Proc. of 19th Int. Conf. on Electricity Distribution, Vienna, Austria, 2007, 1--4.
[8]
Taichiro Sakagami et al. Performance of a DC-based microgrid system in Okinawa. In Proc. of International Conference on Renewable Energy Research and Applications 2015.
[9]
Justo, J. J., Mwasilu, F., Lee, J., and Jung, J.-W. AC-microgrids versus DC-microgrids with distributed energy resources: A review. 2013. Renewable and Sustainable Energy Reviews, vol. 24, (2013), 387--405.
[10]
Annette Werth, Nobuyuki Kitamura, Mario Tokoro, Kenji Tanaka (2017). Evaluation model for multi - microgrid with autonomous DC energy exchange. IEEJ Transactions on Electrical and Electronic Engineering, 12(5), 676--682.
[11]
Shirzeh, H. 2015. Balancing Energy in the Smart Grid Using Distributed Value Function (DVF). IEEE Trans. On Smart Grid, vol. 6, no. 2 (Mar. 2015), 808--818.
[12]
Roose, L. R., Rawson J. C., Matsuura M., Nathan L. 2014. Hawaii Natural Energy Institute project on Development and Demonstration of Smart Grid Inverters for High-Penetration PV Applications.
[13]
Roose, L. R. 2014. Smart Grid for Smart Cities. In Proceedings of the 3rd World Conference on Green Productivity (Taipei, Taiwan, Republic of China, Nov. 4, 2014).
[14]
Asmus, P. 2010. Microgrid, virtual power plants and our distributed energy future. The Electricity Journal, vol. 23, no. 10 (2010), 72--82.
[15]
Sallam, A. A., and Malik, O. P. 2012. Electric Distribution Systems. Wiley-IEEE Press, 1st edition, 576 pp.
[16]
Farhangi, H. 2010. The path of the smart grid. IEEE Power Energy Magazine, vol. 8, no.1 (2010), 18--28.
[17]
Hubert Zimmermann (April 1980). "OSI Reference Model---The ISO Model of Architecture for Open Systems Interconnection". IEEE Transactions on Communications. 28 (4): 425--432.
[18]
Basua, AK, Chowdhury SP, Chowdhury S, Paul S. 2011. Microgrids: energy management by strategic deployment of DERs---a comprehensive survey. Renewable and Sustainable Energy Reviews, vol. 15, no. 9, 4348--1356.
[19]
Nikonowicz, L., Milewski, J. 2012. Virtual Power Plants -general review: structure, application and optimization. Journal of Power Technologies, vol. 92, no. 3, (2012), 135--149.
[20]
Dally, W. J. and Towles, B. P. 2004. Principles and Practice of Interconnection Network. Morgan Kaufmann, 1st edition, 550 pp.
[21]
Xu, Junming. 2002. Topological Structure and Analysis of Interconnection Networks. Springer, Network Theory and Applications, 342 pp.
[22]
Beni, G., Wang, J. Swarm Intelligence in Cellular Robotic Systems. In Proc. of NATO Advanced Workshop on Robots and Biological Systems, Tuscany, Italy, June 26-30 (1989). pp. 703--712.
[23]
Sharma, R. L. 1990. Network Topology Optimization: The Art and Science of Network Design. Van Nostrand Reinhold, 349 pp.
[24]
Lynch, Gary S. 2009. Single Point of Failure: The 10 Essential Laws of Supply Chain Risk Management. Wiley, 1st edition, 320 pp.

Cited By

View all
  • (2024)A comparative study of energy routing algorithms to optimize energy transmission in energy internetThe Journal of Supercomputing10.1007/s11227-024-06203-9Online publication date: 3-Jun-2024
  • (2022)Peer-to-Peer Energy Trading With Energy Path Conflict Management in Energy Local Area NetworkIEEE Transactions on Smart Grid10.1109/TSG.2022.314123613:3(2269-2278)Online publication date: May-2022
  • (2022)Semi-decentralized energy routing algorithm for minimum-loss transmission in community energy internetInternational Journal of Electrical Power & Energy Systems10.1016/j.ijepes.2021.107547135(107547)Online publication date: Feb-2022
  • Show More Cited By

Index Terms

  1. Open Routed Energy Distribution Network based on a Concept of Energy Router in Smart Grid

    Recommendations

    Comments

    Please enable JavaScript to view thecomments powered by Disqus.

    Information & Contributors

    Information

    Published In

    cover image ACM Other conferences
    iiWAS2019: Proceedings of the 21st International Conference on Information Integration and Web-based Applications & Services
    December 2019
    709 pages
    Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

    In-Cooperation

    • JKU: Johannes Kepler Universität Linz
    • @WAS: International Organization of Information Integration and Web-based Applications and Services

    Publisher

    Association for Computing Machinery

    New York, NY, United States

    Publication History

    Published: 22 February 2020

    Permissions

    Request permissions for this article.

    Check for updates

    Author Tags

    1. Energy distribution system
    2. energy management
    3. energy router
    4. smart grid

    Qualifiers

    • Research-article
    • Research
    • Refereed limited

    Conference

    iiWAS2019

    Contributors

    Other Metrics

    Bibliometrics & Citations

    Bibliometrics

    Article Metrics

    • Downloads (Last 12 months)8
    • Downloads (Last 6 weeks)0
    Reflects downloads up to 22 Jan 2025

    Other Metrics

    Citations

    Cited By

    View all
    • (2024)A comparative study of energy routing algorithms to optimize energy transmission in energy internetThe Journal of Supercomputing10.1007/s11227-024-06203-9Online publication date: 3-Jun-2024
    • (2022)Peer-to-Peer Energy Trading With Energy Path Conflict Management in Energy Local Area NetworkIEEE Transactions on Smart Grid10.1109/TSG.2022.314123613:3(2269-2278)Online publication date: May-2022
    • (2022)Semi-decentralized energy routing algorithm for minimum-loss transmission in community energy internetInternational Journal of Electrical Power & Energy Systems10.1016/j.ijepes.2021.107547135(107547)Online publication date: Feb-2022
    • (2021)Review and Comparative Study of Energy Routing Algorithms for Energy Internet2021 IEEE 5th Conference on Energy Internet and Energy System Integration (EI2)10.1109/EI252483.2021.9712929(567-572)Online publication date: 22-Oct-2021
    • (2020)Routed Energy Distribution Network Concept with Electrical Energy RouterReliability and Statistics in Transportation and Communication10.1007/978-3-030-44610-9_50(511-520)Online publication date: 29-Mar-2020

    View Options

    Login options

    View options

    PDF

    View or Download as a PDF file.

    PDF

    eReader

    View online with eReader.

    eReader

    Media

    Figures

    Other

    Tables

    Share

    Share

    Share this Publication link

    Share on social media