• DocumentCode
    3582050
  • Title

    Performance Analysis of R-DCN Architecture for Next Generation Web Application Integration

  • Author

    Udeze, C.C. ; Okafor, K.C. ; Okezie, C.C. ; Okeke, I.O. ; Ezekwe, C.G.

  • Author_Institution
    R&D Dept., ELDI, Awka, Nigeria
  • fYear
    2014
  • Firstpage
    1
  • Lastpage
    12
  • Abstract
    With the astronomical growth in online presence vis-à-vis the IT industry across the globe, there is an urgent need to evolve cloud based DataCenter architectures that can rapidly accommodate web application integrations which can serve the energy industries, educational sector, finance sector, manufacturing sector, etc. Previous works in DataCenter domain have not investigated on cloud based DataCenter Servercentric characteristics for evaluation studies. This paper then proposed a Reengineered DataCenter (R-DCN) architecture for efficient web application integration. In this regard, attempt was made to address network scalability, efficient and distributed routing, packets traffic control, and network security using analytical formulations and behavioural algorithms having considered some selected architectures. In this work a simulation experiment was carried out to study six key performance metrics for all the architectures. It was observed that the network throughput, fault-tolerance/network capacity, utilization, latency, service availability, scalability and clustering effects of R-DCN responses with respect to above Key Performance (KPIs) metrics were satisfactory when compared with BCube and DCell architectures. Future work will show a detailed validation using a cloud testbed and CloudSim Simulator.
  • Keywords
    cloud computing; computer centres; fault tolerant computing; local area networks; telecommunication computing; CloudSim Simulator; KPI metrics; R-DCN architecture; R-DCN responses; cloud based DataCenter architectures; distributed routing; fault-tolerance; key performance metrics; network capacity; network scalability; network security; network throughput; next generation Web application integration; packet traffic control; reengineered DataCenter architecture; service availability; Fault tolerance; Fault tolerant systems; Monsoons; Routing; Scalability; Servers; Virtualization; Architectures; Cloud; KPIs; Metrics; Performance; R-DCN; Servercentric; Traffic;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Adaptive Science & Technology (ICAST), 2014 IEEE 6th International Conference on
  • Type

    conf

  • DOI
    10.1109/ICASTECH.2014.7068061
  • Filename
    7068061