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dc.contributor.authorBreyer, Christian*
dc.contributor.authorOei, Pao-Yu*
dc.contributor.authorKemfert, Claudia*
dc.date.accessioned2021-02-11T07:31:40Z
dc.date.available2021-02-11T07:31:40Z
dc.date.issued2020*
dc.date.submitted2020-01-30 16:39:46*
dc.identifier43651*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/39842
dc.description.abstractEnergy markets are already undergoing considerable transitions to accommodate new (renewable) energy forms, new (decentral) energy players, and new system requirements, e.g. flexibility and resilience. Traditional energy markets for fossil fuels are therefore under pressure, while not-yet-mature (renewable) energy markets are emerging. As a consequence, investments in large-scale and capital intensive (traditional) energy production projects are surrounded by high uncertainty, and are difficult to hedge by private entities. Traditional energy production companies are transforming into energy service suppliers and companies aggregating numerous potential market players are emerging, while regulation and system management are playing an increasing role. To address these increasing uncertainties and complexities, economic analysis, forecasting, modeling and investment assessment require fresh approaches and views. Novel research is thus required to simulate multiple actor interplays and idiosyncratic behavior. The required approaches cannot deal only with energy supply, but need to include active demand and cover systemic aspects. Energy market transitions challenge policy-making. Market coordination failure, the removal of barriers hindering restructuring and the combination of market signals with command-and-control policy measures are some of the new aims of policies.The aim of this Special Issue is to collect research papers that address the above issues using novel methods from any adequate perspective, including economic analysis, modeling of systems, behavioral forecasting, and policy assessment.The issue will include, but is not be limited to: Local control schemes and algorithms for distributed generation systems; Centralized and decentralized sustainable energy management strategies; Communication architectures, protocols and properties of practical applications; Topologies of distributed generation systems improving flexibility, efficiency and power quality; Practical issues in the control design and implementation of distributed generation systems; Energy transition studies for optimized pathway options aiming for high levels of sustainability*
dc.languageEnglish*
dc.subjectTA1-2040*
dc.subjectT1-995*
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technologyen_US
dc.subject.otherDemand Response*
dc.subject.otherEnergiewende*
dc.subject.otherenergy system modeling*
dc.subject.othermarket value*
dc.subject.otherinterconnector capacities*
dc.subject.otherenergy sector integration*
dc.subject.othersector-coupling*
dc.subject.otheraviation*
dc.subject.otherrenewables*
dc.subject.othernet metering*
dc.subject.other100% RE pathways*
dc.subject.othervariable renewable energy sources*
dc.subject.otherenergy transformation*
dc.subject.otherrenewable energy*
dc.subject.otherblackout prevention*
dc.subject.othervehicle-to-grid*
dc.subject.otherenergy market*
dc.subject.otherenergy storage*
dc.subject.otherroad*
dc.subject.otherelectric vehicle*
dc.subject.otherelectrostatic-driven inertia*
dc.subject.otherRE integration*
dc.subject.othercarbon dioxide reduction*
dc.subject.otherOrkney*
dc.subject.otherenergy system optimisation*
dc.subject.othertransport sector*
dc.subject.otherisland energy system transition*
dc.subject.otherpumped hydro storage*
dc.subject.otherstorage solutions*
dc.subject.otherclimate policies*
dc.subject.otherrail*
dc.subject.otherpower-to-gas*
dc.subject.otherelectricity market modeling*
dc.subject.othergreenhouse gas emissions*
dc.subject.otherrenewable transition*
dc.subject.othercommunity*
dc.subject.otherIndia*
dc.subject.otherdelayed grid expansion*
dc.subject.otherwind power*
dc.subject.otherblockchain*
dc.subject.othersmart grid technologies*
dc.subject.otherÅland*
dc.subject.otherGermany*
dc.subject.othersolar energy*
dc.subject.otherrenewable integration*
dc.subject.otherenergy system modelling*
dc.subject.otherSolid State Transformer*
dc.subject.otherdecarbonization*
dc.subject.otherimmunity*
dc.subject.othersystem-friendly renewables*
dc.subject.othermarine*
dc.subject.othertransportation demand*
dc.subject.othernumeric modelling*
dc.subject.othermicrogeneration*
dc.subject.otherflexibility*
dc.subject.otherprosumer*
dc.subject.othermicrogrid*
dc.subject.othermaritime transportation*
dc.subject.otherEuropean electricity system*
dc.subject.otherSamsø*
dc.subject.otherresilience*
dc.subject.othersmart energy system*
dc.subject.othermicrogrid by design*
dc.subject.otherglobal energy system model (GENeSYS-MOD)*
dc.subject.otherelectricity markets*
dc.subject.otherenergy community*
dc.subject.othersector coupling*
dc.subject.otherfinal energy demand*
dc.subject.otherenergy transition*
dc.subject.otherenergy policy*
dc.subject.otherelectrification*
dc.subject.otheragent-based modelling*
dc.subject.otherlevelized cost of mobility*
dc.subject.otherdynamic positioning*
dc.subject.othergamification*
dc.subject.othership’s electrical power system*
dc.subject.otherregulation*
dc.subject.otherMadeira*
dc.subject.otherGENeSYS-MOD*
dc.subject.otheropen energy modelling*
dc.subject.otherMexico*
dc.subject.other100% renewable energy*
dc.title100% Renewable Energy Transition: Pathways and Implementation*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03928-035-3*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039280353*
oapen.relation.isbn9783039280346*
oapen.pages356*
oapen.edition1st*


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