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Computer Science 7

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  4. SWARM (Storage With Amply Redundant Megawatt)

SWARM (Storage With Amply Redundant Megawatt)

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  • Concluded Projects
    • ACOOWEE – Activity Oriented Programming of Wireless Sensor Networks
    • ALF: Autonomous Localization Framework
    • Analysis Methods for Non-Markovian Models
    • A⁵: Development Method for Driver Assistance Systems based on a Domain-Specific Language
    • BioNeting – Bio-inspired Networking
    • CoCar – Cooperative Cars
    • Concurrency in timed usage models for system testing in the automotive domain
    • Data Quality and the Control of Automotive Manufacturing
    • Decentralized organization of future energy systems based on the combination of blockchains and the cellular concept
    • Dienstgütegarantien für Ethernet in der industriellen Kommunikation
    • e-NUE: Co-Simulation of Electrified and Connected Vehicles
    • Energy System Analysis
    • Formal verification and validation of test methods for complex vehicle safety systems in virtual environments
    • GeTTeMo – Systematische Generierung von Testszenarien aus benutzungsorientierten Testmodellen
    • HISTORY – HIgh Speed neTwork mOnitoRing and analYsis
    • Hybrid Simulation of Intelligent Energy Systems
    • Integrated Modeling Platforms for Computer Infrastructures
    • MaTeLo (Markov Test Logic)
    • Mo.S.I.S. (Modular Software Engineering for Interoperative Systems)
    • Model support in design, test, and monitoring of image system architectures
    • Modeling of External and Internal Impact Factors on the Performance of Wireless Local Area Networks
    • monk-it – Efficient distributed monitoring, attack detection, and event correlation
    • p2p4wsn – Efficient Data Management in Mobile Sensor Networks using Peer-to-Peer Technologies
    • Pal-Grid: A Comprehensive Simulation Framework for the Palestinian Power Grid
    • Privacy in Vehicular Networks
    • ProHTA: Prospective Assessment of Healthcare Technologies
    • Q.E.D. (QoS Enhanced Development Using UML2.0 and TTCN-3)
    • Quality of Service of Networked Embedded Systems
    • Requirements oriented testing with Markov chain usage models in the automotive domain
    • ROSES – Robot Assisted Sensor Networks
    • Secure intelligent Mobility – Testarea Germany
    • Security and Quality of Service and Aspects in ZigBee-based Wireless Communication
    • Self-organization of SN-MRS systems
    • Sensitivity Analysis of Queueing Networks
    • SkyNet – Communicating Paragliders
    • Smart Grid Services
    • Smart Grid Solar
    • Software-in-the-Loop Simulation and Testing of Highly Dependable Distributed Automotive Applications
    • Support for inter-domain routing and data replication in virtual coordinate based networks
    • SWARM (Storage With Amply Redundant Megawatt)
    • Telematics Services in Hybrid Networks
    • Transmission of Safety-Relevant Sensor Data in Intra-Car Communication Systems
    • Veins 1.0 – Vehicles in Network Simulation
    • Web Cluster Laboratory
    • WinPEPSY-QNS – Performance Evaluation and Prediction System for Queueing Networks

SWARM (Storage With Amply Redundant Megawatt)

SWARM (Storage With Amply Redundant Megawatt)

SWARM Picture

Project Description

Im Rahmen des Kooperationsprojektes SWARM der N-ERGIE AG und dem Energie Campus Nürnberg (EnCN) beschäftigt sich unter anderem der Lehrstuhl für Informatik 7 (Rechnernetze und Kommunikationssysteme) mit den Fragestellungen, unter welchen Bedingungen Privathaushalte in innovative Stromspeicher investieren, wie sich diese Speicher auf die Stabilität des Stromnetzes auswirken und welchen ökonomischen Nutzen sie aus Sicht des Netzbetreibers bzw. der Privathaushalte schaffen.

Übergeordnetes Ziel der Untersuchungen ist es, Erkenntnisse über vernetzte Speicher zu gewinnen und zu vertiefen.Das von der Caterva GmbH entwickelte Energiespeichersystem (ESS) mit einer Gesamtleistung von 20 kW und einer Bruttokapazität von 21 kWh richtet sich an Privathaushalte, die deutlich mehr als die durchschnittlich üblichen 30 Prozent ihres selbst erzeugten PV-Stroms nutzen möchten, da das ESS eine hohe Deckung des individuellen Strombedarfs aus Eigenerzeugung ermöglicht.

Die Innovation des Systems liegt jedoch in seiner zweiten Funktion: Die Energiespeichersysteme können sich zu einem virtuellen Großspeicher vernetzen, der am Primärregelleistungsmarkt teilnimmt und damit eine Stabilisierungsfunktion im Stromnetz übernimmt. Der virtuelle Großspeicher speichert Strom bei einem Überangebot im Netz und speist umgekehrt bei Strombedarf in das Netz ein.Der Lehrstuhl für Informatik 7 (Rechnernetze und Kommunikationssysteme) entwickelt ein Simulationsmodell eines Kleinspeicher-Verbunds. Ziel des Modells ist es, die technischen Auswirkungen der Speicher auf die Netze zu ermitteln, sowie den ökonomischen Nutzen sowohl für die beteiligten Privathaushalte als auch für das gesamte Energiesystem zu identifizieren.

Project Period

    2015-01-01 – 2017-12-31
    Reinhard German, Matthias Luther, Veronika Grimm

Project Members

    Kishan Veerashekar, David Steber, Jonas Schlund, Simon Mehl

Sponsored by

    Industrie

Related Publications

  • Schlund J., Steinert R., Pruckner M.:
    Coordinating E-Mobility Charging for Frequency Containment Reserve Power Provision
    Workshop on Electric Vehicle Systems, Data and Applications (Karlsruhe, Germany, 2018-06-12 - 2018-06-12)
    In: Proceedings of the Ninth International Conference on Future Energy Systems, New York, NY, USA: 2018
    DOI: 10.1145/3208903.3213892
    URL: http://doi.acm.org/10.1145/3208903.3213892
    BibTeX: Download
  • Schlund J., Betzin C., Wolfschmidt H., Veerashekar K., Luther M.:
    Investigation, modeling and simulation of redox-flow, lithium-ion and lead-acid battery systems for home storage applications
    11th International Renewable Energy Storage Conference (IRES 2017) (Düsseldorf, 2017-03-14 - 2017-03-16)
    In: Proceedings of the 11th International Renewable Energy Storage Conference (IRES 2017) 2017
    BibTeX: Download
  • Schlund J., German R.:
    A Control Algorithm for a Heterogeneous Virtual Battery Storage Providing FCR Power
    2017 International Conference on Smart Grid and Smart Cities (Singapore, 2017-07-23 - 2017-07-26)
    In: Proceedings of the 2017 International Conference on Smart Grid and Smart Cities 2017
    DOI: 10.1109/ICSGSC.2017.8038550
    BibTeX: Download
  • Steber D., Pruckner M., Schlund J., Bazan P., German R.:
    Including a virtual battery storage into thermal unit commitment
    In: Computer Science - Research and Development (2017), p. 1-7
    ISSN: 1865-2034
    DOI: 10.1007/s00450-017-0362-7
    BibTeX: Download
  • Schlund J., Steber D., Bazan P., German R.:
    Increasing the Efficiency of a Virtual Battery Storage Providing Frequency Containment Reserve Power by Applying a Clustering Algorithm
    7th Innovative Smart Grid Technologies (ISGT Asia 2017) (Auckland, 2017-12-04 - 2017-12-07)
    In: Proceedings of the 7th Innovative Smart Grid Technologies Asia 2017
    DOI: 10.1109/ISGT-Asia.2017.8378430
    BibTeX: Download
  • Steber D., Pruckner M., Bazan P., German R.:
    SWARM - Providing 1 MW PCR Power with Residential PV-Battery Energy Storage - Simulation and Empiric Validation
    IEEE PowerTech 2017 (Manchester)
    BibTeX: Download
  • German R., Götz K., Grimm V., Kufner A., Leepa C., Luther M., Mehl S., Sigert I., Steber D., Veerashekar K.:
    Virtueller Großspeicher zur Erbringung von Primärregelleistung – Pilotprojekt SWARM
    OTTI-Konferenz „Zukünftige Stromnetze für Erneuerbare Energien“ (Berlin, 2017-01-31 - 2017-02-01)
    BibTeX: Download
  • Steber D., Bazan P., German R.:
    SWARM – Primärregelleistungserbringung mit verteilten Batteriespeichern in Haushalten
    14. Symposium Energieinnovation 2016 (Graz, 2016-02-10 - 2016-02-12)
    BibTeX: Download
  • Steber D., Bazan P., German R.:
    SWARM – Different strategies and first experiences of providing frequency containment reserve power with distributed battery energy storage systems
    Integration of Sustainable Energy Conference (ISEneC) 2016 (Nürnberg, 2016-07-11 - 2016-07-12)
    BibTeX: Download
  • Leepa C., Kufner A., Mehl S., Steber D., Veerashekar K., Sigert I., Götz K., German R., Grimm V., Luther M.:
    SWARM – Successful Provision of Frequency Containment Reserve with Distibuted Energy Storage Systems
    Internation Renewable Energy Storage Conference (IRES) 2016 (Düsseldorf, 2016-03-15 - 2016-03-17)
    In: EUROSOLAR and the World Council for Renewable Energy (WCRE) (ed.): Conference Presentations and Materials of the "10th International Renewable Energy Storage Conference" (IRES 2016), Düsseldorf/Germany, 15-17 March 2015 2016
    BibTeX: Download
  • Bazan P., Pruckner M., Steber D., German R.:
    Hierarchical Simulation of the German Energy System and Houses with PV and Storage Systems
    4th D-A-CH Energieinformatik Conference (Karlsruhe, 2015-11-12 - 2015-11-13)
    In: Sebastian Gottwalt, Lukas König, Hartmut Schmeck (ed.): Energy Informatics - 4th D-A-CH Conference, EI 2015, Karlsruhe, Germany, November 12-13, 2015, Proceedings, Switzerland: 2015
    DOI: 10.1007/978-3-319-25876-8_2
    BibTeX: Download
  • Steber D., Bazan P., German R.:
    SWARM - Increasing Households’ Internal PV Consumption and Offering Primary Control Power with Distributed Batteries
    4th D-A-CH Conference, Energieinformatik 2015 (Karlsruhe, 2015-11-12 - 2015-11-13)
    In: Sebastian Gottwalt, Lukas König, Hartmut Schmeck (ed.): Energy Informatics - 4th D-A-CH Conference, EI 2015, Karlsruhe, Germany, November 12-13, 2015, Proceedings, Karlsruhe, Germany: 2015
    DOI: 10.1007/978-3-319-25876-8_1
    BibTeX: Download

Links

Project Period

    2015-04-01 – 2017-12-31

Project Members

    Prof. Dr.-Ing. Reinhard German
    Wirt.-Ing. David Steber, M.Sc.
    Jonas Schlund, M.Sc.

Sponsored by

n-ergie logo caterva-logo bwimi_wappen

Involved institutions

    Lehrstuhl für Wirtschaftsmathematik
    Lehrstuhl für Elektrische Energiesysteme
Computer Science 7 (Computer Networks and Communication Systems)
Friedrich-Alexander-Universität Erlangen-Nürnberg

Martensstr. 3
91058 Erlangen
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