DocumentCode
437998
Title
Detector control system for the ATLAS muon endcap trigger
Author
Bressler, S. ; Tarem, S. ; Harel, A. ; Hadash, E. ; Lifshitz, R. ; Lupu, N. ; Levinson, L.J.
Author_Institution
Dept. of Phys., Israeli Inst. of Technol., Haifa, Israel
Volume
3
fYear
2004
fDate
16-22 Oct. 2004
Firstpage
1733
Abstract
Thin gap chambers (TGC) is the end-cap muon trigger detector of the ATLAS experiment, one of the major projects being built at CERN. The TGC detector will be inaccessible during operation due to high radiation levels in the ATLAS cavern. The detector requires a detector control system (DCS) to monitor important detector and environmental parameters, calibrate, set and maintain the configuration of front end electronics, and take appropriate corrective action to maintain the detector stability and reliable performance. The TGC DCS is a distributed system, comprising a central control and configuration master station and about 1,500 micro-controller slaves connected to it using CAN (controller area network). The CAN nodes control hardware devices such as the thresholds for ASD discriminators, and data acquisition parameters. CAN nodes are distributed on the on-chamber trigger-DAQ electronic boards, to service many channels close to their source. In contrast to many other control systems, the TGC DCS makes full utilization of the intelligence offered by the ATLAS ELMB CAN nodes in order to distribute the control of complex tasks on the front end nodes and reduce CAN bus traffic. These nodes implement JTAG and I2C protocols, monitor hardware parameters, generate test patterns, and histogram chamber charge for diagnostics. The hardware and software design, integration, performance and radiation test results are described.
Keywords
controller area networks; distributed control; microcontrollers; muon detection; nuclear electronics; physical instrumentation control; position sensitive particle detectors; ATLAS cavern; ATLAS experiment; ATLAS muon endcap trigger; I2C protocol; JTAG protocol; central control; chamber charge histogram; configuration master station; controller area network bus traffic; controller area network nodes; detector control system; detector stability; diagnostics; distributed system; end-cap muon trigger detector; front end electronics; front end nodes; hardware design; hardware devices; hardware parameters; microcontroller slaves; on-chamber trigger-data acquisition electronic boards; radiation test; software design; test patterns; thin gap chambers; Centralized control; Condition monitoring; Control systems; Distributed control; Hardware; Maintenance; Master-slave; Mesons; Radiation detectors; Stability;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium Conference Record, 2004 IEEE
Conference_Location
Rome
ISSN
1082-3654
Print_ISBN
0-7803-8700-7
Electronic_ISBN
1082-3654
Type
conf
DOI
10.1109/NSSMIC.2004.1462576
Filename
1462576
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