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Decomposing TIAM-MACRO to assess climatic change mitigation
S. Kypreos
*
,
Antti Lehtilä
*
Corresponding author for this work
Paul Scherrer Institute (PSI)
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
7
Citations (Scopus)
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Keyphrases
Energy Model
100%
Utility Function
100%
Workstation
100%
Producer-consumer
100%
Macromodel
100%
Personal Computer
100%
Engineering Model
100%
Macroeconomics
100%
Decomposition Method
100%
Supply Function
100%
Single Thread
100%
Computer Time
100%
Growth Model
100%
Quadratic Cost
100%
Decomposed Problem
100%
Bottom-up Engineering
100%
Climatic Change
100%
Multiregion
100%
Income Elasticity
100%
Nonlinear Optimal
100%
64-bit
100%
Price Elasticity
100%
Macroeconomic Models
100%
Intertemporal Utility
100%
Original Problem
100%
Scenario Generator
100%
Mathematical Programming
100%
Production Function
100%
In(III)
100%
Consumer Agent
100%
INIS
solutions
100%
size
100%
nonlinear problems
100%
climatic change
100%
decomposition
100%
mitigation
100%
engineering
50%
production
50%
cost
50%
demand
50%
growth
50%
supply
50%
prices
50%
algorithms
50%
energy models
50%
computers
50%
income
50%
foundations
50%
elasticity
50%
utilities
50%
programming
50%
personal computers
50%
Economics, Econometrics and Finance
Macroeconomic Model
100%
Growth Theory
100%
Utility Function
100%
Supply Function
100%
Production Function
100%
Macroeconomics
100%
Price Elasticity
100%
Engineering
Sectoral
100%
Engineering Model
100%
Quadratic Cost
100%
Personal Computer
100%
Climatic Change
100%
Computer Science
Mathematical Programming
100%
Decomposition Method
100%
Personal Computer
100%
Utility Function
100%
Climatic Change
100%