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Traffic-Aware VDC Embedding in Data Center: A Case Study of FatTree 被引量:2

Traffic-Aware VDC Embedding in Data Center: A Case Study of FatTree
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摘要 Virtualization is a common technology for resource sharing in data center. To make efficient use of data center resources, the key challenge is to map customer demands (modeled as virtual data center, VDC) to the physical data center effectively. In this paper, we focus on this problem. Distinct with previous works, our study of VDC embedding problem is under the assumption that switch resource is the bottleneck of data center networks (DCNs). To this end, we not only propose relative cost to evaluate embedding strategy, decouple embedding problem into VM placement with marginal resource assignment and virtual link mapping with decided source-destination based on the property of fat-tree, but also design the traffic aware embedding algorithm (TAE) and first fit virtual link mapping (FFLM) to map virtual data center requests to a physical data center. Simulation results show that TAE+FFLM could increase acceptance rate and reduce network cost (about 49% in the case) at the same time. The traffie aware embedding algorithm reduces the load of core-link traffic and brings the optimization opportunity for data center network energy conservation. Virtualization is a common technology for resource sharing in data center.To make efficient use of data center resources,the key challenge is to map customer demands(modeled as virtual data center,VDC) to the physical data center effectively.In this paper,we focus on this problem.Distinct with previous works,our study of VDC embedding problem is under the assumption that switch resource is the bottleneck of data center networks(DCNs).To this end,we not only propose relative cost to evaluate embedding strategy,decouple embedding problem into VM placement with marginal resource assignment and virtual link mapping with decided source-destination based on the property of fat-tree,but also design the traffic aware embedding algorithm(TAE) and first fit virtual link mapping(FFLM) to map virtual data center requests to a physical data center.Simulation results show that TAE+FFLM could increase acceptance rate and reduce network cost(about 49%in the case) at the same time.The traffic aware embedding algorithm reduces the load of core-link traffic and brings the optimization opportunity for data center network energy conservation.
出处 《China Communications》 SCIE CSCD 2014年第7期142-152,共11页 中国通信(英文版)
基金 This research was partially supported by the National Grand Fundamental Research 973 Program of China under Grant (No. 2013CB329103), Natural Science Foundation of China grant (No. 61271171), the Fundamental Research Funds for the Central Universities (ZYGX2013J002, ZYGX2012J004, ZYGX2010J002, ZYGX2010J009), Guangdong Science and Technology Project (2012B090500003, 2012B091000163, 2012556031).
关键词 virtual data center EMBEDDING switch capacity fat-tree 虚拟数据中心 嵌入问题 流量负载 VDC 感知 资源转换 网络成本 嵌入算法
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  • 1K. V. Vishwanath and N. Nagappan, "Charac- terizing cloud computing hardware reliability," in Proceedings of the 1st ACM symposium on Cloud computing, sen SoCC '10. New York, NY, USA: ACM, 2010, pp. 193-204.
  • 2J. C. Mogul and L. Popa, "What we talk about when we talk about cloud network perfor- mance," SIGCOMM Comput. Commun. Rev., vol. 42, no. 5, pp. 44-48, Sep. 2012.
  • 3N. McKeown, T. Anderson, H. Balakrishnan, G. Parulkar, L. Peterson, J. Rexford, S. Shenker, and J. Turner, "Openflow: enabling innovation in campus networks," SIGCOMM Comput. Com- mun. Rev., vol. 38, no. 2, pp. 69-74, Man 2008.
  • 4C. Guo, H. Wu, K. Tan, L. Shi, Y. Zhang, and S. Lu, "Dcell: a scalable and fault-tolerant network structure for data centers," in Proceedings of the ACM SIGCOMM 2008 conference on Data communication, sen SIGCOMM '08. New York, NY, USA: ACM, 2008, pp. 75-86.
  • 5C. Guo, G. Lu, D. Li, H. Wu, X. Zhang, Y. Shi, C. Tian, Y. Zhang, and S. Lu, "Bcube: a high per- formance, server-centric network architecture for modular data centers," S[GCOMM Comput Commun. Rev., vol. 39, no. 4, pp. 63-74, Aug. 2009.
  • 6M. AI-Fares, A. Loukissas, and A. Vahdat, "A scalable, commodity data center network archi- tecture," in Proceedings of the ACM SIGCOMM 2008 conference on Data communication, set. SIGCOMM '08. New York, NY, USA: ACM, 2008, pp. 63-74.
  • 7C. Guo, G. Lu, H. J. Wang, S. Yang, C. Kong, R Sun, W. Wu, and Y. Zhang, "Secondnet: a data center network virtualization architecture with bandwidth guarantees," in Proceedings of the 6th International COnference, ser. Co-NEXT '10. New York, NY, USA: ACM, 2010, pp. 15:1-15:12. [Online].
  • 8M. Yu, Y. Yi, J. Rexford, and M. Chiang, "Re- thinking virtual network embedding: substrate support for path splitting and migration," SIG- COMM Comput. Commun. Rev., vol. 38, no. 2, pp. 17-29, Mar. 2008.
  • 9X. Cheng, S. Su, Z. Zhang, H. Wang, F. Yang, Y. Luo, and J. Wang, "Virtual network embedding through topology-aware node ranking," SIG- COMM Comput. Commun. Rev., vol. 41, no. 2, pp. 38-47, Apr. 2011.
  • 10N. Bobroff, A. Kochut, and K. Beaty, "Dynamic placement of virtual machines for managing sla violations," in Integrated Network Management, 2007. IM '07. 10th [FIP/[EEE International Sym- pos{um on, 2007, pp. 119-228.

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