• DocumentCode
    3078243
  • Title

    mAMBER: Accelerating Explicit Solvent Molecular Dynamic with Intel Xeon Phi Many-Integrated Core Coprocessors

  • Author

    Xin Liu ; Shaoliang Peng ; Canqun Yang ; Chengkun Wu ; Haiqiang Wang ; Qian Cheng ; Weiliang Zhu ; Jinan Wang

  • Author_Institution
    Sch. of Comput. Sci., Nat. Univ. of Defense Technol., Changsha, China
  • fYear
    2015
  • fDate
    4-7 May 2015
  • Firstpage
    729
  • Lastpage
    732
  • Abstract
    Molecular dynamics (MD) is a computer simulation of physical movements of atoms and molecules, which is a very important research technique for the study of biological and chemical systems at micro-scale. Assisted Model Building with Energy Refinement (AMBER) is one of the most commonly used software for MD. However, the microsecond MD simulation of large-scale atom system requires a lot of computation power. In this paper, we propose mAMBER: an Intel Xeon Phi Many-Integrated Core (MIC) Coprocessors accelerated implementation of explicit solvent all-atom classical molecular dynamics (MD) within the AMBER program package. We mAMBER also includes new parallel algorithm using CPUs and MIC coprocessors on Tianhe-2 supercomputer. With several optimizing techniques including CPU/MIC collaborated parallelization, factorization and asynchronous data transfer framework, we can accelerate the sander program of AMBER (version 12) in ´offload´ mode, and achieves a 4.17-fold overall speedup compared with the CPU-only sander program.
  • Keywords
    biology computing; coprocessors; digital simulation; molecular dynamics method; multiprocessing systems; parallel algorithms; software packages; CPU-MIC collaborated parallelization; CPU-only sander program; Intel Xeon Phi many-integrated core coprocessors; MIC coprocessors; Tianhe-2 supercomputer; assisted model building with energy refinement; asynchronous data transfer framework; biological systems; chemical systems; computer simulation; explicit solvent all-atom classical molecular dynamics acceleration; factorization framework; large-scale atom system; mAMBER program package; microsecond MD simulation; parallel algorithm; parallel optimization technique; Acceleration; Biological system modeling; Computational modeling; Coprocessors; Graphics processing units; Microwave integrated circuits; Supercomputers; Many Integrated Core (MIC) Coprocessor; Molecular dynamics; mAMBER;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Cluster, Cloud and Grid Computing (CCGrid), 2015 15th IEEE/ACM International Symposium on
  • Conference_Location
    Shenzhen
  • Type

    conf

  • DOI
    10.1109/CCGrid.2015.66
  • Filename
    7152543