Managing interconnected production in a dynamic network a fair gain-sharing collaborative solution
Contributions to game theory and management, Tome 17 (2024), pp. 231-242 Cet article a éte moissonné depuis la source Math-Net.Ru

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This paper presents an analysis on the optimal management of interconnected production networks Collaboration represents the best possibility of achieving a group optimal solution that enhances payoffs of the companies in a network. Since companies are not identical, some of them may capture substantially less gain through interconnection than their contributions to other providers. An optimality principle in gain-sharing that reflects the contributions of the participating companies is needed. This paper developed a novel dynamic fair gain-sharing solution for interconnected production networks that fulfills the requirements of a sustainable scheme — individual rationality, group optimality, time consistency and fair-sharing principle.
Keywords: network dynamic game, gain-sharing principle.
Mots-clés : pareto efficient collaboration
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David W.K. Yeung; Leon A. Petrosyan; Yingxuan Zhang. Managing interconnected production in a dynamic network a fair gain-sharing collaborative solution. Contributions to game theory and management, Tome 17 (2024), pp. 231-242. http://geodesic.mathdoc.fr/item/CGTM_2024_17_a18/

[1] Allen, B., “Flipping the intuition for games on dynamic networks”, Nature Computational Science, 3:9 (2023), 737–738 | DOI

[2] Grüner, S., Radmacher, F. G., Thomas, W., “Connectivity games over dynamic networks”, Theoretical Computer Science, 493 (2013), 46–65 | DOI | MR

[3] Mazalov, V., Chirkova, J., Networking Games, Elsevier Science Technology, San Diego, 2019

[4] Menache, I., Ozdaglar, A. E., Network games: theory, models, and dynamics, Morgan Claypool, 2011 | MR

[5] Miles, A. L., Cavaliere, M., “Cooperation dynamics in dynamical networks with history-based decisions”, PloS One, 17:11 (2022), e0275909–e0275909 | DOI

[6] Pei, S., Cressman, R., Zhang, B., Dynamic Games on Networks with Heterogeneous Players, 2022 https://ssrn.com/abstract=4217352 | DOI

[7] Pei, S., Cressman, R., Zhang, B., “Dynamic games on arbitrary networks with two types of players”, Journal of Mathematical Economics, 113 (2024), 102990 | DOI | MR

[8] Petrosyan, L. A., Yeung, D. W. K., “Shapley Value for Differential Network Games: Theory and Application”, Journal of Dynamics and Games, 8:2 (2021), 151–166 | DOI | MR

[9] Petrosyan, L. A., Yeung, D. W. K., Pankratova, Y., “Dynamic Cooperative Games on Networks”, Mathematical Optimization Theory and Operations Research: Recent Trends. MOTOR 2021, Communications in Computer and Information Science, 1476, eds. Strekalovsky A., Kochetov Y., Gruzdeva T., Orlov A., Springer, Cham, 2021 | DOI | MR

[10] Shapley, L. S., “A Value for N-person Games”, Contributions to the Theory of Games, eds. H. Kuhn and A. Tucker, Princeton University Press, Princeton, 1953, 307–317 | MR

[11] Tomassini, M., Pestelacci, E., “Coordination games on dynamical networks”, Games, 1:3 (2010), 242–261 | DOI | MR

[12] Yeung, D. W. K., Petrosyan, L. A., “Subgame Consistent Cooperative Solutions in Stochastic Differential Games”, Journal of Optimization Theory and Applications, 120:3 (2004), 651–666 | DOI | MR

[13] Yeung, D. W. K., Petrosyan, L. A., Cooperative Stochastic Differential Games, Springer-Verlag, New York, 2006 | MR

[14] Yeung, D. W. K., Petrosyan, L. A., “Subgame Consistent Solutions for Cooperative Stochastic Dynamic Games”, Journal of Optimization Theory and Applications, 145:3 (2010), 579–596 | DOI | MR

[15] Yeung, D. W. K., Petrosyan, L. A., Subgame Consistent Cooperation: A Comprehensive Treatise, Springer, 2016 | MR

[16] Yeung, D. W. K., Petrosyan, L. A., Zhang, Y. X., “Trade with Technology Spillover: A Dynamic Network Game Analysis”, International Game Theory Review, 23:1 (2021), 2050011 | DOI | MR

[17] Yeung, D. W. K., Petrosyan, L. A., Zhang, Y. X., “A Dynamic Network Game of the Fintech Industry”, Journal of the Operations Research Society of China, 12:1 (2024), 5–33 | DOI | MR

[18] Yeung, D. W. K., Petrosyan, L. A., Zhang, Y. X., “A Fair-Sharing Value for Cooperative Dynamic Network Games”, Dynamic Games and Applications, 2024 | DOI | MR

[19] Yeung, D. W. K., Petrosyan, L. A., Zhang, Y. X., Managing Interconnection of Electricity Generation, Transmission and Distribution: A Dynamic Collaborative Solution, paper prepared for presentation at the IEEE TENCON 2024 (Marina Bay Sands, Singapore, 1-4, Dec. 2024), 2024