Title
Game theoretic approach for fertilizer application: looking for the propensity to cooperate.
Abstract
This paper continues the research implemented in previous work of (Schreider et al. in Environ. Model. Assess. 15(4):223–238, ) where a game theoretic model for optimal fertilizer application in the Hopkins River catchment was formulated, implemented and solved for its optimal strategies. In that work, the authors considered farmers from this catchment as individual players whose objective is to maximize their objective functions which are constituted from two components: economic gain associated with the application of fertilizers which contain phosphorus to the soil and environmental harms associated with this application. The environmental losses are associated with the blue-green algae blooming of the coastal waterways due to phosphorus exported from upstream areas of the catchment. In the previous paper, all agents are considered as rational players and two types of equilibria were considered: fully non-cooperative Nash equilibrium and cooperative Pareto optimum solutions. Among the plethora of Pareto optima, the solution corresponding to the equally weighted individual objective functions were selected. In this paper, the cooperative game approach involving the formation of coalitions and modeling of characteristic value function will be applied and Shapley values for the players obtained. A significant contribution of this approach is the construction of a characteristic function which incorporates both the Nash and Pareto equilibria, showing that it is superadditive. It will be shown that this approach will allow each players to obtain payoffs which strictly dominate their payoffs obtained from their Nash equilibria.
Year
DOI
Venue
2013
https://doi.org/10.1007/s10479-013-1381-9
Annals of Operations Research
Keywords
Field
DocType
Water quality,Phosphorus application,Cooperative games,Shapley values
Revenue,Resource management,Economics,Stakeholder,Game theoretic,Cooperative game theory,Mathematical model,Management science,Environmental economics,Greenhouse gas,Decision-making
Journal
Volume
Issue
ISSN
206
1
0254-5330
Citations 
PageRank 
References 
0
0.34
1
Authors
4
Name
Order
Citations
PageRank
Sergei Yu. Schreider131.43
Panlop Zeephongsekul214419.11
B. Abbasi314519.89
M. Fernandes400.34