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Virtual Network Embedding with Opportunistic Resource Sharing

delete2014-03-01
delete102
PRE
AI
张盛 (Sheng Zhang) *
Z
Zhuzhong Qian
X
Xiangyu Wu
S
Sanglu Lu
L
Leah Epstein
DOI:10.1109/TPDS.2013.64delete
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Abstract

Abstract

En 中文
Network virtualization has emerged as a promising approach to overcome the ossification of the Internet. A major challenge in network virtualization is the so-called virtual network embedding problem, which deals with the efficient embedding of virtual networks with resource constraints into a shared substrate network. A number of heuristics have been proposed to cope with the NP-hardness of this problem; however, all of the existing proposals reserve fixed resources throughout the entire lifetime of a virtual network. In this paper, we re-examine this problem with the position that time-varying resource requirements of virtual networks should be taken into consideration, and we present an opportunistic resource sharing-based mapping framework, ORS, where substrate resources are opportunistically shared among multiple virtual networks. We formulate the time slot assignment as an optimization problem; then, we prove the decision version of the problem to be NP-hard in the strong sense. Observing the resemblance between our problem and the bin packing problem, we adopt the core idea of first-fit and propose two practical solutions: first-fit by collision probability (CFF) and first-fit by expectation of indicators' sum (EFF). Simulation results show that ORS provides a more efficient utilization of substrate resources than two state-of-the-art fixed-resource embedding schemes.
Keywords:
Virtual network embedding
opportunistic resource sharing
NP-hard
3-partition
bin packing
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Journal

IEEE Transactions on Parallel and Distributed Systems cover
IEEE Transactions on Parallel and Distributed Systems
IF:
6
Papers:
5.2K
Citations:
1.1W

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T
Temple University
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pennsylvania commonwealth system of higher education (pcshe)
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nanjing university
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