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An Exact Virtual Network Embedding Algorithm Based on Integer Linear Programming for Virtual Network Request with Location Constraint 被引量:3

An Exact Virtual Network Embedding Algorithm Based on Integer Linear Programming for Virtual Network Request with Location Constraint
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摘要 Network virtualization is known as a promising technology to tackle the ossification of current Internet and will play an important role in the future network area. Virtual network embedding(VNE) is a key issue in network virtualization. VNE is NP-hard and former VNE algorithms are mostly heuristic in the literature.VNE exact algorithms have been developed in recent years. However, the constraints of exact VNE are only node capacity and link bandwidth.Based on these, this paper presents an exact VNE algorithm, ILP-LC, which is based on Integer Linear Programming(ILP), for embedding virtual network request with location constraints. This novel algorithm is aiming at mapping virtual network request(VNR) successfully as many as possible and consuming less substrate resources.The topology of each VNR is randomly generated by Waxman model. Simulation results show that the proposed ILP-LC algorithm outperforms the typical heuristic algorithms in terms of the VNR acceptance ratio, at least 15%. Network virtualization is known as a promising technology to tackle the ossification of current Internet and will play an important role in the future network area. Virtual network embedding(VNE) is a key issue in network virtualization. VNE is NP-hard and former VNE algorithms are mostly heuristic in the literature. VNE exact algorithms have been developed in recent years. However, the constraints of exact VNE are only node capacity and link bandwidth. Based on these, this paper presents an exact VNE algorithm, ILP-LC, which is based on Integer Linear Programming(ILP), for embedding virtual network request with location constraints. This novel algorithm is aiming at mapping virtual network request(VNR) successfully as many as possible and consuming less substrate resources. The topology of each VNR is randomly generated by Waxman model. Simulation results show that the proposed ILP-LC algorithm outperforms the typical heuristic algorithms in terms of the VNR acceptance ratio, at least 15%.
出处 《China Communications》 SCIE CSCD 2016年第8期177-183,共7页 中国通信(英文版)
基金 supported by the National Basic Research Program of China(973 Program)under Grant 2013CB329005
关键词 network virtualization virtual network embedding exact VNE algorithm integer linear Programming location constraint VNR acceptance ratio network virtualization virtual network embedding exact VNE algorithm integer linear Programming location constraint VNR acceptance ratio.
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  • 1Ashiq Khan, AIf Zugenmaier, Dan Jurca, et a/."Net- work virtualization: a hypervisor for the internet," Communications Magazine, IEEE, 50(1 ): 136-143, 2012.
  • 2Anjing Wang, Mohan lyer, Rudra Dutta, et aL"Net- work virtualization: Technologies, perspectives, and frontiers," Lightwave Technology, Journal of, vol.31, no.4, pp 523-537, 2013.
  • 3J. Turner and D. Taylor, "Diversifying the internet," in Proc. IEEE GLOBECOM, 2005, vol. 2, pp. 755-760.
  • 4Clark, D. D. "The design philosophy of the DARPA Internet protocols," In Proc. of ACM SIGCOMM 88 (Stanford, CA, Aug. 1988), pp 106-114.
  • 5N.Chowdhury, "Network virtualization: State of the art and research challenges," IEEE Commun. Mag., vol.47, no.7, pp 20-26, Jul, 2009.
  • 6A.Berl, A.Fischer, H.deMeer, "Virtualize the future internet-virtualisierungsmethoden und anwend- ungen," Informatik-Spektrum, vol. 33, no. 2, pp. 186-194, Apr, 2010.
  • 7A. Fischer, J. Botero, M. Beck, H. de Meer, and X. Hesselbach. "Virtual network embedding: A survey", Communications Surveys Tutorials, IEEE, PP(99):1 -19, 2013.
  • 8Y. Zhu, M. Ammar, "Algorithms for assigning sub- strate network resources to virtual network compo- nents," In Proc. IEEE INFOCOM. pp. 2812-2823. Apr. 2006.
  • 9M. Yu, Y. Yi, J. Rexford, and M. Chiang, "Rethinkingvirtual network embedding: Substrate support for path splitting and migration,"Comput. Commun. Rev, vol. 38, no. 2, pp. 17-29, Apr. 2008.
  • 10Lischka,J.,and Karl, H, "A virtual network mapping algorithm based on subgraph isomorphism detec- tion," In Proceedings of the Ist ACM workshop on Virtuelized infrastructure systems and architectures (Aug 2009), pp. 81-88, ACM New York, NY, USA.

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