DocumentCode :
19955
Title :
A Cognitive Filter to Automatically Determine Scintillation Detector Materials and to Control Their Spectroscopic Resolution During Temperature Changes
Author :
Neuer, Marcus J. ; Jacobs, Eddie
Author_Institution :
Dept. of Quality & Informationtechnology, VDEh Betriebsforschungsinstitut (BFI), Duesseldorf, Germany
Volume :
61
Issue :
3
fYear :
2014
fDate :
Jun-14
Firstpage :
1304
Lastpage :
1310
Abstract :
The shape of the nuclear signal from scintillators contains information about the detection material from which it originated and its current temperature. A digital filter for this type of signals is presented that automatically extracts both of these pieces of information from the shape of the signals and controls the temperature dependency of the resolution by continuous adaption to this shape. Hereby, nuclear signals are a-priori modelled by an all-pole filter. The concept combines a deconvolution approach based on this model with a least-mean-squares iteration. Beneath the iteration, there is a continuous assessment of the signal shape where the mean-squared distance between the assumed shape and measured shape acts as control parameter for the resolution. From the information stored inside the dynamic filter parameters, the material characteristics are retrieved to identify the detector material. An implementation into a multi-channel-analyser is shown and the technique is verified under real-world environmental conditions.
Keywords :
digital filters; iterative methods; least mean squares methods; scintillation counters; control parameter; deconvolution approach; digital filter; dynamic filter parameters; least-mean-squares iteration; multichannel-analyser implementation; nuclear signal shape; real-world environmental conditions; scintillation detector materials; signal shape continuous assessment; spectroscopic resolution; Deconvolution; Detectors; Instruments; Materials; Shape; Signal resolution; Temperature measurement; Adaptive filters; deconvolution; digital signal processing; gamma-ray detectors;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2014.2313877
Filename :
6820786
Link To Document :
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