INIS
electricity
100%
finland
71%
environmental impacts
58%
emission
53%
grids
50%
climatic change
46%
energy
44%
energy management systems
41%
automation
36%
levels
34%
dynamics
33%
transmission
33%
economics
31%
energy demand
30%
power
29%
climates
29%
power systems
28%
energy consumption
27%
cost
27%
demand
26%
data
26%
energy systems
25%
indicators
25%
simulation
23%
life cycle assessment
21%
management
21%
sustainability
19%
life cycle
19%
households
18%
distribution
18%
optimization
18%
modeling
16%
artificial intelligence
16%
district heating
16%
planning
16%
assessments
16%
electric-powered vehicles
16%
stocks
16%
stochastic processes
16%
market
16%
investment
16%
datasets
16%
interactions
16%
flexibility
16%
concentration
16%
weather
15%
decarbonization
15%
evaluation
14%
heat
13%
carbon dioxide
11%
Keyphrases
Finland
57%
Environmental Impact
56%
Home Energy Management System
50%
Building Energy Consumption
37%
Electricity Mix
33%
Electricity Consumption
30%
Power System
25%
Technology Deployment
25%
Transmission Grid
25%
Home Automation
22%
Thermal Energy Demand
22%
Climate Scenarios
22%
Dispatchable
22%
European Power System
22%
Energy Mix
22%
Climate Change
21%
Smart Buildings
21%
Emission Limits
21%
Climate Change Impacts
19%
Energy Terms
19%
Number of Inhabitants
18%
Life Cycle Assessment
16%
Climatic Conditions
16%
Local Grid
16%
Dynamic Building Stock Model
16%
Stochastic Dynamics
16%
Platform Approach
16%
Dynamic Emission Factors
16%
Northern Finland
16%
Smart Home Automation
16%
Electric Vehicle
16%
Heat Demand
16%
Electricity Market
16%
Future Climate Change
16%
Artificial Intelligence
16%
Environmental Benefits
16%
Distributed Flexibility
16%
Transmission System Operator
16%
Representative Concentration Pathways
16%
Life Cycle Impact Assessment
16%
Distribution System Operator
16%
Distribution of Operators
16%
Grid Dispatching
16%
Prospective Development
16%
District Heating Demand
16%
Flexibility Assessment
16%
Long-term Development
16%
European Grid
16%
CO2 Equivalent
16%
Climate Policy
16%
Engineering
Climate Change
53%
Climatic Change
53%
Home Energy Management System
50%
Electricity Consumption
44%
Power Engineering
36%
Thermal Energy
33%
Intelligent Buildings
33%
Life Cycle Impact Assessment
33%
Electricity Mix
25%
Term Energy
19%
Heat Demand
16%
Building Stock
16%
District Heating
16%
Stochastic Dynamic
16%
Climatic Condition
16%
Power Grid
16%
Outdoor Temperature
16%
Impact Indicator
16%
Electricity Network
16%
Energy System Models
16%
Economic Benefit
16%
Electric Vehicle
16%
Emission Factor
16%
Smart Home
16%
Environmental Benefit
16%
Distribution System Operator
16%
Transmission System Operator
16%
Term Impact
16%
Energy Mix
16%
Artificial Intelligence
16%
Automation System
14%
Renewables
13%
Control Systems
12%
Smart Grid
12%
Residential Sector
12%
Baseline Data
11%
Greenhouse Gas
11%