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15167 Mechanism Design for Decentralized Online Machine Scheduling
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Heydenreich, B. and Müller, R. and Uetz, M.J. (2008) Mechanism Design for Decentralized Online Machine Scheduling. Technical Report TR-CTIT-08-79, Centre for Telematics and Information Technology University of Twente, Enschede. ISSN 1381-3625

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Abstract

Traditional optimization models assume a central decision maker who optimizes a global system performance measure. However, problem data is often distributed among several agents, and agents take autonomous decisions. This gives incentives for strategic behavior of agents, possibly leading to sub-optimal system performance. Furthermore, in dynamic environments, machines are locally dispersed and administratively independent. Examples are found both in business and engineering applications. We investigate such issues for a parallel machine scheduling model where jobs arrive online over time. Instead of centrally assigning jobs to machines, each machine implements a local sequencing rule and jobs decide for machines themselves. In this context, we introduce the concept of a myopic best response equilibrium, a concept weaker than the classical dominant strategy equilibrium, but appropriate for online problems. Our main result is a polynomial time, online mechanism that |assuming rational behavior of jobs| results in an equilibrium schedule that is 3.281-competitive with respect to the maximal social welfare. This is only lightly worse than state-of-the-art algorithms with central coordination.

Item Type:Internal Report (Technical Report)
Research Group:EWI-DMMP: Discrete Mathematics and Mathematical Programming
Research Program:CTIT-IE&ICT: Industrial Engineering and ICT
ID Code:15167
Deposited On:12 March 2009
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