• DocumentCode
    3640935
  • Title

    Prototype real-time ATCA-based LLRF control system

  • Author

    Dariusz Makowski;Waldemar Koprek;Tomasz Jeżyński;Adam Piotrowski;Grzegorz Jabłoński;Wojciech Jałmużna;Krzysztof Czuba;Paweł Prędki;Stefan Simrock

  • Author_Institution
    Technical University of Ł
  • fYear
    2010
  • Firstpage
    1
  • Lastpage
    8
  • Abstract
    The linear accelerators employed to drive Free Electron Lasers (FELs), such as the X-ray Free Electron Laser (XFEL) currently being built in Hamburg, require sophisticated control systems. The Low Level Radio Frequency (LLRF) control system should stabilize the phase and amplitude of the electromagnetic field in accelerating modules with tolerances below 0.02 % for amplitude and 0.01 degree for phase to produce ultra-stable electron beam that meets the conditions required for Self-Amplified Spontaneous Emission (SASE). The LLRF control system of 32-cavity accelerating module of the XFEL accelerator requires acquisition of more than 100 analogue signals sampled with frequency around 100 MHz. Data processing in real-time loop should complete within a few hundreds of nanoseconds. Moreover, the LLRF control system should be reliable, upgradable and serviceable. The Advanced Telecommunications Computing Architecture (ATCA) standard, developed for telecommunication applications, can fulfil all of the above mentioned requirements. The paper presents the architecture of a prototype LLRF control system developed for the XFEL accelerator. The control system composed of ATCA carrier boards with Rear Transition Modules (RTM) is able to supervise 32 cavities. The crucial submodules, like DAQ, Vector Modulator or Timing Module, are designed according to AMC specification. The paper discusses results of the LLRF control system tests that were performed at the FLASH accelerator (DESY, Hamburg) during machine studies.
  • Keywords
    "Control systems","Timing","Cavity resonators","Radio frequency","Field programmable gate arrays","Hardware","Modulation"
  • Publisher
    ieee
  • Conference_Titel
    Real Time Conference (RT), 2010 17th IEEE-NPSS
  • Print_ISBN
    978-1-4244-7108-9
  • Type

    conf

  • DOI
    10.1109/RTC.2010.5750383
  • Filename
    5750383