Digital RF stabilization system based on MicroTCA technology

R. Černe, Z. Lestan, U. Mavrič, B. Repic, B. Baricevic, A. Bardorfer, P. Beltram, T. Beltram, J. Menart, G. Jug, C. Bocchetta
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引用次数: 3

Abstract

This article presents a generic digital control system for the stabilization of Radio Frequency (RF) fields used in particle accelerators, the Libera LLRF. Low Level RF (LLRF) systems have an important contribution in the overall performance of the accelerator since they are responsible for the control of amplitude and phase of electromagnetic fields inside the accelerating structures. The goal was to develop a high performance, small form factor system that uses the latest advances in technology. In order to fulfill these design goals Micro Telecommunications Computing Architecture (MicroTCA) and related standards were chosen as a basis for the system's hardware and software development. Results of hardware development are three different types of Advanced Mezzanine Cards (AMC), Interconnection Board (ICB), chassis, backplane and replaceable fan modules. The AMC boards are LLRF application specific and have input/output ports for RF signals. In order to enable support for different RF frequencies, they also include replaceable RF circuits. The ICB implements the functions of a MicroTCA Carrier Hub (MCH) and acts as a COM Express carrier board for the mounted COM Express module. With its different ports at the front, the ICB enables local and remote operation and maintenance of the Libera LLRF. Chassis management is implemented according to the Intelligent Platform Management Interface (IPMI) protocol. The LLRF application software, which runs on the Linux operating system and includes a Graphical User Interface (GUI), enables the user to operate the system and monitor different types of RF signals.
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基于MicroTCA技术的数字射频稳定系统
本文介绍了一种用于稳定粒子加速器射频场的通用数字控制系统——Libera LLRF。低电平射频(LLRF)系统负责控制加速结构内部电磁场的幅值和相位,对加速器的整体性能有重要贡献。目标是开发一种高性能、小尺寸的系统,使用最新的技术进步。为了实现这些设计目标,选择了微通信计算体系结构(MicroTCA)和相关标准作为系统软硬件开发的基础。硬件开发结果为AMC (Advanced Mezzanine Cards)、ICB (Interconnection Board)、机箱、背板和可更换风扇模块。AMC板是针对LLRF应用的,具有用于RF信号的输入/输出端口。为了支持不同的射频频率,它们还包括可更换的射频电路。ICB实现MicroTCA的MCH (Carrier Hub)功能,为挂载的COM Express模块提供COM Express承载板。ICB具有不同的前端端口,可以对Libera LLRF进行本地和远程操作和维护。机箱管理采用IPMI (Intelligent Platform management Interface)协议。LLRF应用软件在Linux操作系统上运行,包括图形用户界面(GUI),使用户能够操作系统并监控不同类型的RF信号。
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Commissioning of the ATLAS High Level Trigger with proton collisions at the LHC Development of efficient FPGA-based phase meters for IR-interferometers. optimizations for multi-channel interferometers Real-time control of Extremely Large Telescope mirror systems using on-line high performance computing Developments for the PANDA online high level trigger Commissioning the trigger of the Compact Muon Solenoid experiment at the CERN Large Hadron Collider
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