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Simulation of the System-Wide Impact of Power-to-Gas Energy Storages by Multi-stage Optimization

In: Operations Research Proceedings 2014

Author

Listed:
  • Christoph Baumann

    (RWTH Aachen University)

  • Julia Schleibach

    (RWTH Aachen University)

  • Albert Moser

    (RWTH Aachen University)

Abstract

In this paper a simulation method for the European power and natural gas system based on an optimization is introduced. The mathematical formulation of the problem represents a minimization of total costs subject to the coverage of demand and reserve requirements as well as the adherence of technical constraints. Due to the complexity of the problem, especially due to binary decisions and non-linearities resulting from restrictions of thermal power as well as Power-to-Gas plants, a closed-loop formulation is not practicable. Thus, this paper presents a simulation method consisting of a multi-stage optimization with the use of Lagrangian Relaxation and decomposition techniques.

Suggested Citation

  • Christoph Baumann & Julia Schleibach & Albert Moser, 2016. "Simulation of the System-Wide Impact of Power-to-Gas Energy Storages by Multi-stage Optimization," Operations Research Proceedings, in: Marco Lübbecke & Arie Koster & Peter Letmathe & Reinhard Madlener & Britta Peis & Grit Walther (ed.), Operations Research Proceedings 2014, edition 1, pages 25-30, Springer.
  • Handle: RePEc:spr:oprchp:978-3-319-28697-6_4
    DOI: 10.1007/978-3-319-28697-6_4
    as

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