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Virtual load machine as test environment for industrial storage applications

: Schaab, Darian Andreas; Zimmermann, Fabian; Weckmann, Sebastian; Sauer, Alexander


Lödding, Hermann (Ed.) ; International Federation for Information Processing -IFIP-; International Federation for Information Processing -IFIP-, Working Group 5.7 Advances in Production Management Systems:
Advances in Production Management Systems. The Path to Intelligent, Collaborative and Sustainable Manufacturing. Pt.I : IFIP WG 5.7 International Conference, APMS 2017, Hamburg, Germany, September 3-7, 2017, Proceedings
Cham: Springer International Publishing, 2017 (IFIP advances in information and communication technology 513)
ISBN: 978-3-319-66922-9 (Print)
ISBN: 978-3-319-66923-6 (Online)
Conference on Advances in Production Management Systems (APMS) <2017, Hamburg>
Fraunhofer IPA ()
Energiespeicher; smart grid; Energieeffizienz; Energieflexibilität

The market share of renewable energy is rising all over the world and leads to a more and more volatile energy supply. The challenge of keeping supply and demand constantly balanced is getting more complex and dynamic. Large scale energy consumers like industrial facilities need to take on an active role in the energy system and adapt their energy consumption to the energy availability. Denoted as energy flexibility this approach controls the energy consumption by changing e.g. the production plan. Storage technologies decouple offer and demand of energy, that end-users are enabled to adapt their energy consumption. Testing new applications for storages can be technologically demanding and is associated with high costs. This paper proposes a hardware in the loop test environment, with which hardware integrations and control strategies of electric storage systems can be tested on a small scale.