论文标题

Atlas Tile Hadronic量热仪读出的驱动器的操作经验和演变

Operational experience and evolution of the ATLAS Tile Hadronic Calorimeter Read-Out Drivers

论文作者

Valero, A.

论文摘要

tilecal是大型强子对撞机(LHC)的Atlas实验的中央辐照热量表。它是一种抽样检测器,将闪烁的瓷砖嵌入钢吸收板中。瓷砖是分组的形成细胞,由光电倍增管(PMTS)在两侧读出。 PMT数字样品被传输到位于后端系统中的读出驱动程序(ROD),以用于1级触发系统接受的事件。杆是后端电子设备的核心元素,它代表了前端电子和ATLAS总体数据采集(DAQ)系统之间的界面。它负责能源和时间重建,触发器和数据同步,忙碌处理,数据完整性检查和无损数据压缩。 TileCal Rod是一款标准的9U VME板,配备了基于DSP的处理单元夹层卡。总共需要32个杆模块才能读取整个tilecal检测器。每个杆模块必须在不到10微秒的时间内实时处理数据从360 PMT进行处理。杆的调试是在2008年第一次LHC碰撞之前完成的。从那时起,已经实施了几个硬件和固件更新,以将杆适应不断发展的Atlas触发器和调整后的DAQ条件,以遵循LHC参数。提出了初始杆系统,实现的不同更新以及LHC运行1和运行2期间的操作经验。

TileCal is the central hadronic calorimeter of the ATLAS experiment at the Large Hadron Collider (LHC). It is a sampling detector where scintillating tiles are embedded in steel absorber plates. The tiles are grouped forming cells, which are read-out on both sides by photomultiplier tubes (PMTs). The PMT digital samples are transmitted to the Read-Out Drivers (ROD) located in the back-end system for the events accepted by the Level 1 trigger system. The ROD is the core element of the back-end electronics and it represents the interface between the front-end electronics and the ATLAS overall Data AcQuisition (DAQ) system. It is responsible for energy and time reconstruction, trigger and data synchronization, busy handling, data integrity checking and lossless data compression. The TileCal ROD is a standard 9U VME board equipped with DSP based Processing Units mezzanine cards. A total of 32 ROD modules are required to read-out the entire TileCal detector. Each ROD module has to process the data from up to 360 PMTs in real time in less than 10 microseconds. The commissioning of the RODs was completed in 2008 before the first LHC collisions. Since then, several hardware and firmware updates have been implemented to accommodate the RODs to the evolving ATLAS Trigger and DAQ conditions adjusted to follow the LHC parameters. The initial ROD system, the different updates implemented and the operational experience during the LHC Run 1 and Run 2 are presented.

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