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A Coupled Constraint Game Model of International Climate Policy

Authors :
Haurie, Alain
Moresino, Francesco
Vielle, Marc
Viguier, Laurent
Publisher :
Laboratoire de recherche en économie et management de l'environnement

Abstract

This paper proposes a dynamic-game theoretic model for the international negotiations that should take place to agree on a global mitigation scheme when the real extent of climate change due to anthropogenic emissions is known. The model assumes a non-cooperative behavior of the parties except for the fact that they will be collectively committed to reach a target on total cumulative emissions by the year 2050. The concept of normalized equilibrium, introduced by J.B. Rosen for concave games with coupled constraints, is used to characterize a family of dynamic equilibrium solutions in an m-player game where the agents are groups of countries and the payoffs are the welfare gains evaluated through a Computable General Equilibrium (CGE) model. The equilibrium is computed by implementing an oracle-based optimization method using the implicit definition of the payoffs to the different players obtained in simulations performed with the global CGE model GEMINI-E3. The simulation runs and the manifold of equilibria obtained when the weighting of players varies are discussed and interpreted in economic terms.

Details

Database :
OpenAIRE
Accession number :
edsair.od.......185..3e3bd9c275f5ec40df9dc3fd0e76e619