Trigger System of BESIII

Zhen'An Liu, W. Gong, Ya'nan Guo, D. Jin, Lu Li, Yun-Ju Lu, Q. Qiao, Ke Wang, Shujun Wei, Hao Xu, Yueyuan Zhang, Dixin Zhao
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引用次数: 11

Abstract

The trigger system of Beijing Spectrometer III, part of the upgrade of Beijing Electron Positron Collider, has been designed and implemented, and is ready for installation. This paper describes briefly the system components, its characteristics, and some technical issues. The system consists mainly of four parts: MDC (drift chamber) tracking subsystem, EMC (electromagnetic calorimeter) subsystem, TOF (time of flight) subsystem and global trigger. Some highlights in designing of this system includes: trigger scheme optimization with software simulation; optical transmission between trigger and FEEs to realize isolation with FEEs to avoid ground loop current interference; designed with most latest FPGA (Xilinx Spartan 3, VirtexII Pro...) for simplicity, high reliability and easy maintenance and hence smaller system; FPGA in-system programming or firmware online downloadable via onboard, panel connector and/or VME bus for modification flexibility during commissioning. Different from the usual fix delay data transmission from FEE to trigger, the RocketIO has been used as SEDES.
BESIII触发系统
作为北京正电子对撞机升级改造的一部分,北京三号谱仪的触发系统已经设计完成,准备安装。本文简要介绍了该系统的组成、特点及一些技术问题。该系统主要由四个部分组成:漂移室跟踪分系统、电磁量热计分系统、飞行时间分系统和全局触发器。本系统设计的重点包括:通过软件仿真优化触发方案;触发器与费之间的光传输,实现与费的隔离,避免地环路电流干扰;采用最新的FPGA (Xilinx Spartan 3, VirtexII Pro…)设计,简单,高可靠性和易于维护,因此系统更小;可通过板载、面板连接器和/或VME总线在线下载FPGA系统内编程或固件,以便在调试期间灵活修改。与通常从FEE到触发器的固定延迟数据传输不同,RocketIO已被用作SEDES。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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