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Competitive Equilibriums of Multi-Agent Systems over an Infinite Horizon

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Abstract

In this paper, we investigate the properties of competitive equilibriums for dynamic multi-agent systems (MAS) over an infinite horizon. When there is no external resource supply, a group of dynamic agents with distributed resource allocations form a transactive market to share their resources at a specific price. Each agent makes decisions on the locally consumed resource and the traded resource. The system reaches a competitive equilibrium when each agent's payoff is maximized and the tradings are balanced. Firstly, we consider general utility functions and show that under feasibility assumptions, any competitive equilibrium maximizes the social welfare. Secondly, we prove that for sufficiently small initial conditions, the social welfare maximization solution constitutes a competitive equilibrium with zero price. We also prove for general feasible initial conditions, there exists a time instant after which the optimal price, corresponding to a competitive equilibrium, becomes zero. Finally, we specifically focus on quadratic MAS for which the system-level social welfare optimization becomes a classical constrained linear quadratic regulator (CLQR) problem. We construct explicitly a feasible set of initial conditions under which the price under a competitive equilibrium is zero for all time.

Original languageEnglish
Title of host publication12th IFAC Symposium on Nonlinear Control Systems NOLCOS 2022
EditorsJochen Trumpf, Robert Mahony
Place of PublicationACT Australia
PublisherElsevier
Pages37-42
Number of pages6
Volume56
Edition1
DOIs
Publication statusPublished - 2023
Externally publishedYes
EventIFAC Symposium on Nonlinear Control Systems 2022 - Canberra, Australia
Duration: 4 Jan 20236 Jan 2023
Conference number: 12th
https://www.sciencedirect.com/journal/ifac-papersonline/vol/56/issue/1 (Proceedings)
https://web.archive.org/web/20240324090310/https://nolcos2022.com/ (Website)

Conference

ConferenceIFAC Symposium on Nonlinear Control Systems 2022
Abbreviated titleNOLCOS 2022
Country/TerritoryAustralia
CityCanberra
Period4/01/236/01/23
Internet address

Keywords

  • Competitive equilibrium
  • linear quadratic regulator (LQR)
  • multi-agent system
  • resource allocation
  • social welfare maximization

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