The Network Architecture of the Data-processing System for the Photodetector of an Orbital Detector of Ultra-high Energy Cosmic Rays

被引:0
|
作者
A. A. Belov
P. A. Klimov
S. A. Sharakin
机构
[1] Moscow State University,Skobel’tsyn Institute of Nuclear Physics
[2] Moscow State University,Department of Physics
关键词
D O I
暂无
中图分类号
学科分类号
摘要
An orbital detector of ultra-high energy cosmic rays has been developed by the Skobel’tsyn Institute of Nuclear Physics of the Moscow State University together with the international JEM-EUSO collaboration for mounting on board the International Space Station. Its multichannel photodetector is composed of an array of multianode photomultiplier tubes (MAPMTs) combined into modules with 36 MAPMTs in each and with approximately 105 pixels in total. Since the number of channels is great and the speed of measurements is high, high requirements are set for the system of detection, selection, and analysis of events. The designs of the modular photodetector composition and the network architecture of the data processing system that is capable of performing efficient selection of events with different space−time structures are presented. The network principle is implemented via three types of communications: high-speed links between adjacent photodetector modules, long-distance communications for recording information to the permanent memory, and synchronizing links for timing the operation of individual modules. This digital-processing system of the detector can be designed using the ZYNQ system-on-chip concept that includes a field programmable gate array and a processor system.
引用
收藏
页码:27 / 33
页数:6
相关论文
共 50 条
  • [31] Exotic sources of ultra-high energy cosmic rays
    Masperi, L
    OBSERVING ULTRAHIGH ENERGY COSMIC RAYS FROM SPACE AND EARTH, 2001, 566 : 284 - 288
  • [32] GALAXIES CORRELATING WITH ULTRA-HIGH ENERGY COSMIC RAYS
    Zaw, Ingyin
    Farrar, Glennys R.
    Greene, Jenny E.
    ASTROPHYSICAL JOURNAL, 2009, 696 (02): : 1218 - 1229
  • [33] The possible sources of ultra-high energy cosmic rays
    Mikhailov, AA
    NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 1999, 75A : 359 - 361
  • [34] Ultra-high energy cosmic rays: Present and future
    Santo, Catarina Espirito
    COGENT PHYSICS, 2015, 2 (01):
  • [35] Ultra-high energy cosmic rays in harmonic space
    Cameraa, Stefano
    37TH INTERNATIONAL COSMIC RAY CONFERENCE, ICRC2021, 2022,
  • [36] Superheavy gravitinos and ultra-high energy cosmic rays
    Meissner, Krzysztof A.
    Nicolai, Hermann
    JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, 2019, (09):
  • [37] Ultra-high energy cosmic rays and cosmogenic neutrinos
    Ave, M
    Busca, N
    Olinto, AV
    Watson, AA
    Yamamoto, T
    NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 2004, 136 : 159 - 168
  • [38] Propagation and acceleration of ultra-high energy cosmic rays
    Ptuskin, VS
    SEVENTEENTH TEXAS SYMPOSIUM ON RELATIVISTIC ASTROPHYSICS AND COSMOLOGY, 1995, 759 : 464 - 467
  • [39] Searching for ultra-high energy cosmic rays with smartphones
    Whiteson, Daniel
    Mulhearn, Michael
    Shimmin, Chase
    Cranmer, Kyle
    Brodie, Kyle
    Burns, Dustin
    ASTROPARTICLE PHYSICS, 2016, 79 : 1 - 9
  • [40] An Orbital Detector of Ultra-High-Energy Cosmic Rays: Status and Prospects of the KLYPVE Project
    Belov A.A.
    Klimov P.A.
    Sharakin S.A.
    Zotov M.Y.
    Bulletin of the Russian Academy of Sciences: Physics, 2023, 87 (07) : 867 - 869