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Flexible Load Interruptions in a Virtual Power Plant
Evangelos Rikos
, Tomai Tomtsi
, Stathis Tselepis
, Nikos Hatziargyriou
, Pekka Koponen
ENI S.p.A. Research Center for Renewable Energies & Environment-Istituto Donegani
National Technical University of Athens
Research output
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Keyphrases
Flexible Load
100%
Virtual Power Plant
100%
European Countries
50%
Everyday Life
50%
Energy Saving
50%
Motivation
50%
Energy Consumed
50%
Electricity Consumption
50%
Environmental Pollution
50%
Greenhouse Gas
50%
Energy Reduction
50%
Real-world Experiment
50%
Hotel Industry
50%
Local Government
50%
Athens
50%
Human Population
50%
Specific Load
50%
Greenhouse Gasses
50%
INIS
energy
100%
power plants
100%
reduction
66%
control
33%
electricity
33%
industry
33%
emergencies
33%
occupants
33%
increasing
33%
automation
33%
greenhouse gases
33%
pollution
33%
hotels
33%
local government
33%
human populations
33%
Engineering
Real Life
100%
Virtual Power Plant
100%
Hotels
100%
Electricity Consumption
100%
Greenhouse Gas
100%
Earth and Planetary Sciences
Energy Saving
100%
Environmental Pollution
100%
Hotel Industry
100%
Greenhouse Gas
100%
Agricultural and Biological Sciences
Greenhouse Gas
100%
Electric Power Plant
100%
Mathematics
Same Direction
100%
Real Life
100%
Material Science
Greenhouse Gas
100%