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The ATLAS Fast TracKer—Architecture, Status and High-Level Data Quality Monitoring Framework ?

机译:ATLAS快速跟踪器-体系结构,状态和高级数据质量监视框架?

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摘要

The Fast Tracker (FTK) is a highly parallel processor dedicated to a quick and efficient reconstruction of tracks in the Pixel and Semiconductor Tracker (SCT) detectors of the ATLAS experiment at LHC. It is designed to identify charged particle tracks with transverse momentum above 1 GeV and reconstruct their parameters at an event rate of up to 100 kHz. The average latency of the processing is below 100 μs at the expected collision intensities. This performance is achieved by using custom ASIC chips with associative memory for pattern matching, while modern FPGAs calculate the track parameters. This paper describes the architecture, the current status and a High-Level Data Quality Monitoring framework of the FTK system. This monitoring framework provides an online comparison of the FTK hardware output with the FTK functional simulation, which is run on the pixel and SCT detector data at a low rate, allowing the detection of non-expected outputs of the FTK system.
机译:快速跟踪器(FTK)是高度并行的处理器,专用于在LHC的ATLAS实验的像素和半导体跟踪器(SCT)检测器中快速有效地重建轨道。它旨在识别横向动量高于1 GeV的带电粒子轨道,并以高达100 kHz的事件速率重建其参数。在预期的碰撞强度下,处理的平均等待时间低于100μs。通过使用具有关联存储器的定制ASIC芯片进行模式匹配来实现此性能,而现代FPGA则计算轨迹参数。本文介绍了FTK系统的体系结构,当前状态和高级数据质量监视框架。此监视框架提供了FTK硬件输出与FTK功能仿真的在线比较,该功能以低速率对像素和SCT检测器数据运行,从而可以检测FTK系统的非预期输出。

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