• DocumentCode
    2858493
  • Title

    Fermilab´s multi-petabyte scalable mass storage system

  • Author

    Oleynik, Gene ; Alcorn, Bonnie ; Baisley, Wayne ; Bakken, Jon ; Berg, David ; Berman, Eileen ; Huang, Chih-Hao ; Jones, Terry ; Kennedy, Robert D. ; Kulyavtsev, Alexander ; Moibenko, Alexander ; Perelmutov, Timur ; Petravick, Don ; Podstavkov, Vladimir ;

  • Author_Institution
    Fermi Nat. Accel. Lab., USA
  • fYear
    2005
  • fDate
    11-14 April 2005
  • Firstpage
    73
  • Lastpage
    80
  • Abstract
    Fermilab provides a multi-petabyte scale mass storage system for high energy physics (HEP) experiments and other scientific endeavors. We describe the scalability aspects of the hardware and software architecture that were designed into the mass storage system to permit us to scale to multiple petabytes of storage capacity, manage tens of terabytes per day in data transfers, support hundreds of users, and maintain data integrity. We discuss in detail how we scale the system over time to meet the ever-increasing needs of the scientific community, and relate our experiences with many of the technical and economic issues related to scaling the system. Since the 2003 MSST conference, the experiments at Fermilab have generated more than 1.9 PB of additional data. We present results on how this system has scaled and performed for the Fermilab CDF and D0 Run II experiments as well as other HEP experiments and scientific endeavors.
  • Keywords
    cache storage; physics computing; software architecture; Fermilab; data integrity; hardware architecture; high energy physics; multipetabyte scalable mass storage system; software architecture; Computer architecture; Data analysis; Energy storage; Hardware; Laboratories; Libraries; Power generation economics; Scalability; Software architecture; Storage automation;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Mass Storage Systems and Technologies, 2005. Proceedings. 22nd IEEE / 13th NASA Goddard Conference on
  • Print_ISBN
    0-7695-2318-8
  • Type

    conf

  • DOI
    10.1109/MSST.2005.16
  • Filename
    1410725