Cooperative games defined by multi-objective optimization in competition for subsurface resources
Per Pettersson, Sebastian Krumscheid, Sarah Gasda

TL;DR
This paper introduces a novel cooperative game framework based on multi-objective optimization for subsurface resource management, enabling collaboration among competing agents with conflicting goals while reducing computational costs.
Contribution
It models subsurface agent interactions as partition function cooperative games with externalities, leveraging Pareto set hierarchies to efficiently compute optimal coalition structures.
Findings
Demonstrated framework on groundwater and CO2 injection cases
Proved Pareto set hierarchy reduces computational costs
Showed wide range of possible outcomes in simulations
Abstract
We propose a novel decision making framework for forming potential collaboration among otherwise competing agents in subsurface systems. The agents can be, e.g., groundwater, CO, or hydrogen injectors and extractors with conflicting goals on a geophysically connected system. The operations of a given agent affect the other agents by induced pressure buildup that may jeopardize system integrity. In this work, such a situation is modeled as a cooperative game where the set of agents is partitioned into disjoint coalitions that define the collaborations. The games are in partition function form with externalities, i.e., the value of a coalition depends on both the coalition itself and on the actions of external agents. We investigate the class of cooperative games where the coalition values are the total injection volumes as given by Pareto optimal solutions to multi-objective…
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Taxonomy
TopicsGame Theory and Voting Systems · Climate Change Policy and Economics · Optimization and Variational Analysis
