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Risk premiums in the German day-ahead Electricity Market

Citations

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Cited by:

  1. van Koten, Silvester, 2021. "The forward premium in electricity markets: An experimental study," Energy Economics, Elsevier, vol. 94(C).
  2. Paraschiv, Florentina, 2013. "Price Dynamics in Electricity Markets," Working Papers on Finance 1314, University of St. Gallen, School of Finance.
  3. Bhar, Ramaprasad & Colwell, David B. & Xiao, Yuewen, 2013. "A jump diffusion model for spot electricity prices and market price of risk," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 392(15), pages 3213-3222.
  4. Florian Ziel & Rick Steinert & Sven Husmann, 2015. "Forecasting day ahead electricity spot prices: The impact of the EXAA to other European electricity markets," Papers 1501.00818, arXiv.org, revised Dec 2015.
  5. repec:dui:wpaper:1502 is not listed on IDEAS
  6. Bevin-McCrimmon, Fergus & Diaz-Rainey, Ivan & McCarten, Matthew & Sise, Greg, 2018. "Liquidity and risk premia in electricity futures," Energy Economics, Elsevier, vol. 75(C), pages 503-517.
  7. Muche, Thomas, 2014. "Optimal operation and forecasting policy for pump storage plants in day-ahead markets," Applied Energy, Elsevier, vol. 113(C), pages 1089-1099.
  8. Algieri, Bernardina & Leccadito, Arturo & Tunaru, Diana, 2021. "Risk premia in electricity derivatives markets," Energy Economics, Elsevier, vol. 100(C).
  9. Valitov, Niyaz, 2019. "Risk premia in the German day-ahead electricity market revisited: The impact of negative prices," Energy Economics, Elsevier, vol. 82(C), pages 70-77.
  10. Wieger Hinderks & Ralf Korn & Andreas Wagner, 2020. "Unifying the theory of storage and the risk premium by an unobservable intrinsic electricity price," Papers 2011.03987, arXiv.org.
  11. Paschmann, Martin, 2017. "Economic Analysis of Price Premiums in the Presence of Non-convexities - Evidence from German Electricity Markets," EWI Working Papers 2017-12, Energiewirtschaftliches Institut an der Universitaet zu Koeln (EWI).
  12. Fanzeres, Bruno & Ahmed, Shabbir & Street, Alexandre, 2019. "Robust strategic bidding in auction-based markets," European Journal of Operational Research, Elsevier, vol. 272(3), pages 1158-1172.
  13. Jenny Winkler & Rouven Emmerich & Mario Ragwitz & Benjamin Pfluger & Christian Senft, 2017. "Beyond the day-ahead market – effects of revenue maximisation of the marketing of renewables on electricity markets," Energy & Environment, , vol. 28(1-2), pages 110-144, March.
  14. Kallabis, Thomas & Pape, Christian & Weber, Christoph, 2016. "The plunge in German electricity futures prices – Analysis using a parsimonious fundamental model," Energy Policy, Elsevier, vol. 95(C), pages 280-290.
  15. Koten, Silvester Van, 2020. "Forward premia in electricity markets: A replication study," Energy Economics, Elsevier, vol. 89(C).
  16. Richter, Jan & Viehmann, Johannes, 2014. "The value of information in explicit cross-border capacity auction regimes in electricity markets," Energy Policy, Elsevier, vol. 70(C), pages 74-84.
  17. Ren'e Aid & Dylan Possamai & Nizar Touzi, 2018. "Optimal electricity demand response contracting with responsiveness incentives," Papers 1810.09063, arXiv.org, revised May 2019.
  18. Michelfelder, Richard A. & Pilotte, Eugene A., 2021. "The electricity production cost curve during extreme winter weather," Journal of Economics and Business, Elsevier, vol. 117(C).
  19. Ren'e Aid & Luciano Campi & Delphine Lautier, 2015. "On the spot-futures no-arbitrage relations in commodity markets," Papers 1501.00273, arXiv.org, revised Feb 2018.
  20. Grant R. McDermott & Øivind A. Nilse, 2014. "Electricity Prices, River Temperatures, and Cooling Water Scarcity," Land Economics, University of Wisconsin Press, vol. 90(1), pages 131-148.
  21. Paraschiv, Florentina & Erni, David & Pietsch, Ralf, 2014. "The impact of renewable energies on EEX day-ahead electricity prices," Energy Policy, Elsevier, vol. 73(C), pages 196-210.
  22. Bertsch, Joachim, 2015. "Is an inefficient transmission market better than none at all? On zonal and nodal pricing in electricity systems," EWI Working Papers 2015-5, Energiewirtschaftliches Institut an der Universitaet zu Koeln (EWI).
  23. Đurišić, Željko & Mikulović, Jovan & Babić, Iva, 2012. "Impact of wind speed variations on wind farm economy in the open market conditions," Renewable Energy, Elsevier, vol. 46(C), pages 289-296.
  24. Pape, Christian & Hagemann, Simon & Weber, Christoph, 2016. "Are fundamentals enough? Explaining price variations in the German day-ahead and intraday power market," Energy Economics, Elsevier, vol. 54(C), pages 376-387.
  25. George Daskalakis, Lazaros Symeonidis, Raphael N. Markellos, 2015. "Electricity futures prices in an emissions constrained economy: Evidence from European power markets," The Energy Journal, International Association for Energy Economics, vol. 0(Number 3).
  26. repec:dui:wpaper:1504 is not listed on IDEAS
  27. Sousa, Joana & Soares, Isabel, 2020. "Demand response, market design and risk: A literature review," Utilities Policy, Elsevier, vol. 66(C).
  28. Obermüller, Frank, 2017. "Explaining Electricity Forward Premiums - Evidence for the Weather Uncertainty Effect," EWI Working Papers 2017-10, Energiewirtschaftliches Institut an der Universitaet zu Koeln (EWI).
  29. Štěpán Kratochvíl & Oldřich Starý, 2013. "Predicting the Prices of Electricity Derivatives on the Energy Exchange," Acta Oeconomica Pragensia, Prague University of Economics and Business, vol. 2013(6), pages 65-81.
  30. Peña, Juan Ignacio & Rodriguez, Rosa, 2016. "Time-zero efficiency of European power derivatives markets," Energy Policy, Elsevier, vol. 95(C), pages 253-268.
  31. Ziel, Florian & Steinert, Rick & Husmann, Sven, 2015. "Forecasting day ahead electricity spot prices: The impact of the EXAA to other European electricity markets," Energy Economics, Elsevier, vol. 51(C), pages 430-444.
  32. Iván Blanco, Juan Ignacio Peña, and Rosa Rodriguez, 2018. "Modelling Electricity Swaps with Stochastic Forward Premium Models," The Energy Journal, International Association for Energy Economics, vol. 0(Number 2).
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