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Taming Wind Energy with Battery Storage

In: Operations Research Proceedings 2007

Author

Listed:
  • Andreas T. Ernst

    (CSIRO Mathematical and Information Sciences)

  • Gaurav Singh

    (CSIRO Mathematical and Information Sciences)

Abstract

The use of wind to generate electrical energy is becoming more popular around the world as global efforts are made to deal with green house gas emissions from more traditional sources of energy. In Australia wind energy is one of the technologies being promoted by mandatory renewable energy targets set by the government [1]. Even though wind energy is more economical and eco-friendly it has one significant problem. The electricity production is inherently highly variable and difficult to predict. Over longer time scales it means that it is difficult to match electricity generation to the daily and seasonal patterns of demand. On shorter time scales the higher frequency “noise” in electricity output causes problems for network stability and managing the short term dispatch of generators to meet demand.

Suggested Citation

  • Andreas T. Ernst & Gaurav Singh, 2008. "Taming Wind Energy with Battery Storage," Operations Research Proceedings, in: Jörg Kalcsics & Stefan Nickel (ed.), Operations Research Proceedings 2007, pages 199-204, Springer.
  • Handle: RePEc:spr:oprchp:978-3-540-77903-2_31
    DOI: 10.1007/978-3-540-77903-2_31
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    Cited by:

    1. L Zhang & A Wirth, 2010. "Wind energy management with battery storage," Journal of the Operational Research Society, Palgrave Macmillan;The OR Society, vol. 61(10), pages 1510-1522, October.
    2. Weeratunge, Hansani & Narsilio, Guillermo & de Hoog, Julian & Dunstall, Simon & Halgamuge, Saman, 2018. "Model predictive control for a solar assisted ground source heat pump system," Energy, Elsevier, vol. 152(C), pages 974-984.

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