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Incentivizing Resource Pooling

delete2025-11-01
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PRE
AI
C
Chen Chen *
Y
Yilun Chen
P
Pengyu Qian
DOI:10.1287/mnsc.2023.03550delete
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Abstract

Abstract

En 中文
Resource pooling improves system efficiency drastically in large stochastic systems, but its effective implementation in decentralized systems remains relatively underexplored. This paper studies how to incentivize resource pooling when agents are self-interested, and their states are private information. Our primary motivation is applications in the design of decentralized computing markets, among others. We study a standard multiserver queueing model in which each server is associated with an M/M/1 queue and aims to minimize its time-average job holding and processing costs. We design a simple token-based mechanism where servers can earn tokens by offering help and spend tokens to request help from other servers, all in their self-interest. The mechanism induces a complex game among servers. We employ the fluid mean-field equilibrium (FMFE) concept to analyze the system, combining mean-field approximation with fluid relaxation. This framework enables us to derive a closedform characterization of servers' FMFE strategies. We show that these FMFE strategies approximate well the servers' rational behavior. We leverage this framework to optimize the design of the mechanism and present our main results: As the number of servers increases, the proposed mechanism incentivizes complete resource pooling-that is, the system dynamics and performance under our mechanism match those under centralized control. Finally, we show that our mechanism achieves the first-best performance even when helping others incurs higher job processing costs and remains nearly optimal in settings with heterogeneous servers.
Keywords:
resource pooling
decentralized application
fluid mean-field equilibrium
dynamic games

Journal

Management Science cover
Management Science
IF:
4.9
Papers:
794
Citations:
5.0W

Organization

N
new york university
Scholars:
6.2K
Papers: 3.0K
Citations: 1
N
nyu shanghai
Scholars:
18
Papers: 14
Citations: 0
T
The Chinese University of Hong Kong, Shenzhen
Scholars:
4.3K
Papers: 4.0K
Citations: 7
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