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Decarbonization of Electricity Systems in Europe: Market Design Challenges

Goran Štrbac, Dimitrios Papadaskalopoulos, Nikolaos Chrysanthopoulos, Ana Estanqueiro, Hugo Algarvio, Fernando Lopes, Laurens de Vries, Germán Morales-España, Jos Sijm, Ricardo Hernández-Serna, Juha Kiviluoma, Niina Helistö

2021IEEE Power and Energy Magazine89 citationsDOIOpen Access PDF

Abstract

Driven by climate change concerns, Europe has taken significant initiatives toward the decarbonization of its energy system. The European Commission (EC) has set targets for 2030 to achieve at least 40% reduction in greenhouse gas emissions with respect to the 1990 baseline level and cover at least 32% of the total energy consumption in the European Union (EU) through renewable energy sources, predominantly wind and solar generation. However, these technologies are inherently characterized by high variability, limited predictability and controllability, and lack of inertia, significantly increasing the balancing requirements of the system with respect to historical levels. The flexibility burden is currently carried by flexible fossil-fueled conventional generators (mainly gas), which are required to produce significantly less energy (as low operating cost and CO <sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</sub> -free renewable and nuclear generation are prioritized in the merit order) and operate part loaded with frequent startup and shut-down cycles, with devastating effects on their cost efficiency.

Topics & Concepts

Renewable energyEnvironmental economicsFlexibility (engineering)Greenhouse gasFossil fuelElectricityElectricity generationControllabilityBaseline (sea)European unionEnvironmental scienceEngineeringAutomotive engineeringBusinessWaste managementEconomicsElectrical engineeringPower (physics)Applied mathematicsOceanographyGeologyPhysicsMathematicsEconomic policyEcologyQuantum mechanicsBiologyManagementIntegrated Energy Systems OptimizationHybrid Renewable Energy SystemsSmart Grid Energy Management
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