DocumentCode :
1065007
Title :
DSP Online Algorithms for The ATLAS TileCal Read-Out Drivers
Author :
Valero, A. ; Abdallah, J. ; Castillo, V. ; Cuenca, C. ; Ferrer, A. ; Fullana, E. ; Gonzalez, V. ; Higon, E. ; Poveda, J. ; Ruiz-Martinez, A. ; Salvachua, B. ; Sanchis, E. ; Solans, C. ; Torres, J. ; Valls, J.A.
Author_Institution :
Inst. de Fisica Corpuscular, Valencia
Volume :
55
Issue :
1
fYear :
2008
Firstpage :
158
Lastpage :
164
Abstract :
TileCal is the hadronic tile calorimeter of the ATLAS experiment at LHC/CERN. The central element of the back-end system of the TileCal detector is the read-out driver (ROD).The main components of the TileCal ROD are the Digital Signal Processors (DSPs) placed on the processing unit (PU) daughterboards. This paper presents a detailed description of the code developed for the DSPs. The code is divided into two different parts: the first part contains the core functionalities and the second part the reconstruction algorithms. The core acts as an operating system and controls configuration, data reception and transmission and synchronization between front-end data and the timing, trigger and control (TTC) information. The reconstruction algorithms implemented on the DSP are the optimal filtering (OF), muon tagging (MTag) and missing calculation. The OF algorithm reconstructs the deposited energy and the phase of the signal for every calorimeter channel within a front-end module. This reconstructed energy is used by the MTag algorithm to tag low transverse momentum muons that may escape the ATLAS muon spectrometer Level 1 trigger whereas the Missing algorithm computes the total transverse energy and the projection on and axis for the entire module that will be used by the Level 2 trigger system.
Keywords :
digital signal processing chips; high energy physics instrumentation computing; particle calorimetry; position sensitive particle detectors; synchronisation; ATLAS TileCal read-out drivers; ATLAS muon spectrometer; DSP online algorithms; TileCal detector; data reception; data synchronization; data transmission; digital signal processors; hadronic tile calorimeter; muon tagging; optimal filtering; processing unit daughterboards; Control systems; Detectors; Digital signal processing; Digital signal processors; Large Hadron Collider; Operating systems; Reconstruction algorithms; Signal processing algorithms; ATLAS; digital signal processors; optimal filtering; read-out driver;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2007.914019
Filename :
4448545
Link To Document :
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