Title :
High-speed data processing module for LLRF
Author :
Makowski, D. ; Mielczarek, A. ; Perek, P. ; Napieralski, A. ; Butkowski, L. ; Branlard, J. ; Fenner, M. ; Schlarb, H. ; Yang, B.
Author_Institution :
Lodz Univ. of Technol., Lodz, Poland
Abstract :
The linear accelerators, like Free-electron LAser in Hamburg (FLASH) or the European X-Ray Free Electron Laser (E-XFEL) take advantage of digital Low Level Radio Frequency (LLRF) system to control the phase and amplitude of electromagnetic field inside superconducting cavities. The real-time control LLRF system, processing data within a few micro seconds, must fulfil the performance requirements and provide monitoring and diagnostics. The AMC-based Controller (DAMC-TCK7) board was developed as a general purpose high-performance low-latency data processing unit designed according to the PICMG MTCA.4 spec. The module provides processing power, data memory, communication links, reference clock, trigger and interlock signals that are required in modern LLRF control systems. The module was originally designed as a Low Level Radio Frequency cavity field stabilizing controller for standing-wave linear accelerators. However, the application of the board is much wider, it is general purpose data processing module suitable for systems requiring low latency and high speed digital signal processing. This paper discusses the requirements for the digital real-time data processing module and presents the laboratory performance evaluation.
Keywords :
X-ray lasers; control engineering computing; digital signal processing chips; electromagnetic fields; free electron lasers; frequency control; optical computing; performance evaluation; stability; AMC-based controller board; DAMC-TCK7; E-XFEL; European x-ray free electron laser; FLASH; Hamburg; LLRF; PICMG MTCA.4 spec; communication links; data memory; digital low level radio frequency system; digital real-time data processing module; electromagnetic field amplitude control; electromagnetic field phase control; free-electron laser; general purpose high-performance low-latency data processing unit; high speed digital signal processing; high-speed data processing module; interlock signals; laboratory performance evaluation; low latency digital signal processing; low level radio frequency cavity field stabilizing controller; processing power; real-time control LLRF system; reference clock; standing-wave linear accelerators; superconducting cavities; trigger signals; Cavity resonators; Control systems; Data processing; Field programmable gate arrays; Free electron lasers; Linear accelerators; X-ray lasers; Data Processing module; High-Energy Physics; Linear Accelerator; Low Level Radio Frequency Control System; Micro Telecommunications Computing Architecture; MicroTCA Enhancements for Rear I/O and Precision Timing;
Conference_Titel :
Real Time Conference (RT), 2014 19th IEEE-NPSS
Print_ISBN :
978-1-4799-3658-8
DOI :
10.1109/RTC.2014.7097409