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A binary link tracker for the BABAR level 1 trigger system

机译:BABAR 1级触发系统的二进制链接跟踪器

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摘要

The BABAR detector at PEP-II will operate in a high-luminosity e/sup +/e/sup -/ collider environment near the /spl Upsi/(4S) resonance with the primary goal of studying CP violation in the B meson system. In this environment, typical physics events of interest involve multiple charged particles. These events are identified by counting these tracks in a fast first level (Level 1) trigger system, by reconstructing the tracks in "real time". For this purpose, a Binary Link Tracker Module (BLTM) was designed and fabricated for the BABAR Level 1 Drift Chamber trigger system. The BLTM is responsible for linking track segments, constructed by the Track Segment Finder Modules (TSFM), into complete tracks. A single BLTM module processes a 360 MBytes/s stream of segment hit data, corresponding to information from the entire Drift Chamber, and implements a fast and robust algorithm that tolerates high hit occupancies as well as local inefficiencies of the Drift Chamber. The algorithms and the necessary control logic of the BLTM were implemented in Field Programmable Gate Arrays (FPGAs), using the VHDL hardware description language. The finished 9U/spl times/400 mm Euro-format board contains roughly 75,000 gates of programmable logic or about 10,000 lines of VHDL code synthesized into five FPGAs.
机译:PEP-II的BABAR检测器将在/ spl Upsi /(4S)共振附近的高发光e / sup + / e / sup-/对撞机环境中运行,其主要目的是研究B介子系统中的CP违规。在这种环境下,典型的典型物理事件涉及多个带电粒子。通过在快速的第一级(级别1)触发系统中对这些磁道进行计数,并通过“实时”重构磁道来识别这些事件。为此,针对BABAR 1级漂移室触发系统设计并制造了二进制链接跟踪器模块(BLTM)。 BLTM负责将由“轨道段查找器”模块(TSFM)构造的轨道段链接到完整轨道。单个BLTM模块可处理360 MBytes / s的分段命中数据流(对应于来自整个漂移室的信息),并实现了一种快速而强大的算法,可以承受较高的命中占用率以及漂移室的局部低效率。 BLTM的算法和必要的控制逻辑是使用VHDL硬件描述语言在现场可编程门阵列(FPGA)中实现的。最终的9U / spl times / 400 mm欧洲格式电路板包含大约75,000个可编程逻辑门或大约10,000行VHDL代码,它们被合成为五个FPGA。

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