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We present a novel method of determining the contribution of load-shifting Demand Response (DR) to energy and reserve markets. We model DR in an Mixed Complementarity Problem (MCP) framework with high levels of wind penetration. Investment, exit and operational decisions are optimised...
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Across Europe, ambitions to further integrate solar and wind power plants into wholesale markets are increasing. Therefore, it becomes crucial to understand the dynamics of future markets with high shares of intermittent renewable energy. Since most renewables incur very low marginal costs,...
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The European Union has set ambitious targets for emission reduction and the penetration of renewable energy, including the electricity generation sector as one of the major emitters of CO2. After a period of subsidy-driven investments, the costs of renewables decreased strongly making...
Persistent link: https://www.econbiz.de/10011899727
The growth in variable renewable energy (vRES) and the need for flexibility in power systems go hand in hand. We study how vRES and other factors, namely the price of substitute fuels, power price volatility, structural breaks, and seasonality impact the hedgeable power spreads (profit margins)...
Persistent link: https://www.econbiz.de/10011763015
Power systems based on renewable energy sources (RES) are characterised by increasingly distributed, volatile and uncertain supply leading to growing requirements for flexibility. In this paper, we explore the role of demand response (DR) as a source of flexibility that is considered to become...
Persistent link: https://www.econbiz.de/10011795293
Growth in energy demand together with the expansion of variable renewables has significant implications for the future electricity system. The increased volatility from growing intermittent production requires new sources of flexibility at a much greater scale to help maintain system balance. In...
Persistent link: https://www.econbiz.de/10012028954