DocumentCode :
36607
Title :
Improvement of Nonlinearity Correction for BESIII ETOF Upgrade
Author :
Weijia Sun ; Ping Cao ; Xiaolu Ji ; Huanhuan Fan ; Hongliang Dai ; Jie Zhang ; Shubin Liu ; Qi An
Author_Institution :
Sate Key Lab. of Particle De-tection & Electron., USTC, Hefei, China
Volume :
62
Issue :
4
fYear :
2015
fDate :
Aug. 2015
Firstpage :
1766
Lastpage :
1770
Abstract :
An improved scheme to implement integral non-linearity (INL) correction of time measurements in the Beijing Spectrometer III Endcap Time-of-Flight (BESIII ETOF) upgrade system is presented in this paper. During upgrade, multi-gap resistive plate chambers (MRPC) are introduced as ETOF detectors which increases the total number of time measurement channels to 1728. The INL correction method adopted in BESIII TOF proved to be of limited use, because the sharply increased number of electronic channels required for reading out the detector strips degrade the system configuration efficiency severely. Furthermore, once installed into the spectrometer, BESIII TOF electronics do not support the TDCs´ nonlinearity evaluation online. In this proposed method, INL data used for the correction algorithm are automatically imported from a non-volatile read-only memory (ROM) instead of from data acquisition software. This guarantees the real-time performance and system efficiency of the INL correction, especially for the ETOF upgrades with massive number of channels. Besides, a signal that is not synchronized to the system 41.65 MHz clock from BEPCII is sent to the frontend electronics (FEE) to simulate pseudo-random test pulses for the purpose of online nonlinearity evaluation. Test results show that the time measuring INL errors in one module with 72 channels can be corrected online and in real time.
Keywords :
data acquisition; ionisation chambers; nuclear electronics; position sensitive particle detectors; readout electronics; Beijing Spectrometer III Endcap time-of-flight upgrade system; correction algorithm; data acquisition software; detector strips; electronic channel; frontend electronics; integral nonlinearity correction; multigap resistive plate chambers; nonlinearity evaluation online; nonvolatile read-only memory; online nonlinearity evaluation; pseudorandom test pulses; real-time performance; system configuration efficiency; time measurement channel; Calibration; Data acquisition; Detectors; Field programmable gate arrays; Monitoring; Read only memory; Time measurement; BESIII; calibration; endcap time of flight (ETOF); nonlinearity correction; time-to-digital converter (TDC);
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2015.2454732
Filename :
7182371
Link To Document :
بازگشت