DocumentCode
1098819
Title
Examination of Count-Starved Gamma Spectra Using the Method of Spectral Comparison Ratios
Author
Pfund, David Michael ; Runkle, Robert C. ; Anderson, Kevin K. ; Jarman, Kenneth D.
Author_Institution
Pacific Northwest Nat. Lab., Richland
Volume
54
Issue
4
fYear
2007
Firstpage
1232
Lastpage
1238
Abstract
We discuss the determination of energy region (bin) boundaries and decision metrics for gamma-ray spectra, acquired using a mid-resolution detector, that are useful for detecting illicit sources at low total counts. The bins are designed to produce the lowest minimum detectable counts using a spectral comparison ratio technique at a given false-positive rate for a specified population of benign-source spectra. Spectra from the benign source population consist of observations taken by a detector on a moving vehicle, as would be obtained during a search for a missing or hidden source. Raw counts in bins are transformed into a vector of background-corrected count differences. Bin boundaries are determined to yield large values of a standardized length of this vector for benign-plus-benchmark sources by applying an optimization technique. The objective function includes penalties for overlap with the spectral features of naturally occurring radioactive materials. We compare estimated minimum detectable count values for such bins applied to depleted uranium and barium-133 sources with those based on gross counting, and we examine the effect of nuisance potassium-, radium- and thorium-dominated sources. Using this methodology, we demonstrate that energy bins may be chosen to be sensitive to special nuclear materials, improving the likelihood of detection in low-count or masked-source searches.
Keywords
gamma-ray detection; gamma-ray spectra; radioactivity measurement; background-corrected count differences; benign-source spectra; count-starved gamma spectra; depleted barium-133 source; depleted uranium source; mid-resolution detector; spectral comparison ratios; Algorithm design and analysis; Detection algorithms; Gamma ray detection; Gamma ray detectors; Radiation detectors; Radioactive materials; Robustness; Spectral analysis; Vehicle detection; Vehicles; Anomaly detection; gamma-ray spectral analysis; gamma-ray spectroscopy; radiation monitoring;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2007.901202
Filename
4291778
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