Symmetry exploitation for online machine covering with bounded migration
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2020Metadata
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Gálvez, Waldo
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Symmetry exploitation for online machine covering with bounded migration
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Abstract
Online models that allow recourse can be highly effective in situations where classical online models are too pessimistic. One such problem is the online machine covering problem on identical machines. In this setting, jobs arrive one by one and must be assigned to machines with the objective of maximizing the minimum machine load. When a job arrives, we are allowed to reassign some jobs as long as their total size is (at most) proportional to the processing time of the arriving job. The proportionality constant is called the migration factor of the algorithm.
Using a rounding procedure with useful structural properties for online packing and covering problems, we design first a simple (1.7 + epsilon)-competitive algorithm using a migration factor of O(1/epsilon), which maintains at every arrival a locally optimal solution with respect to the Jump neighborhood. After that, we present as our main contribution a more involved (4/3 + epsilon)-competitive algorithm using a migration factor of (O) over tilde (1/epsilon(3)). At every arrival, we run an adaptation of the Largest Processing Time first (LPT) algorithm. Since the new job can cause a complete change of the assignment of smaller jobs in both cases, a low migration factor is achieved by carefully exploiting the highly symmetric structure obtained by the rounding procedure.
Patrocinador
SNSF Excellence Grant
2000020B_182865/1
Comisión Nacional de Investigación Científica y Tecnológica (CONICYT)
CONICYT FONDECYT
1181527
1181180
CONICYT-Chile through project PCI
PII 20150140
CONICYT-Chile through project PIA
AFB170001
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Artículo de publicación ISI Artículo de publicación SCOPUS
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ACM Transactions on Algorithms. Vol. 16, No. 4 (2020)
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