An integrated system for non-destructive detection of shielded nuclear material using multiple modes of passive detection

被引:0
|
作者
van der Ende, B. M. [1 ]
Horn, D. [1 ]
Kamaev, O. [1 ]
Li, L. [1 ]
Rand, E. T. [1 ]
Thompson, M. [1 ]
机构
[1] Canadian Nucl Labs, 286 Plant Rd, Chalk River, ON K0J 1J0, Canada
关键词
Coincidence detection; Muon tomography; Relative operating characteristic; Data fusion; Detector complementarity;
D O I
10.1016/j.nima.2022.166635
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
In this work, an experimental assessment is made of the performance of an integrated system for the detection of shielded nuclear material that features muon tomography and polyvinyl toluene bi-panel detector systems. Experimental setups consisting of a barrel of sand containing a lead flask and/or depleted uranium were defined, and were measured in turn by each detection system. For each system, detection parameters for the presence of depleted uranium were put forward that can be used to integrate the two detection systems in a quantitative manner. In the integrated system, the detectability of differences between setups using a given detection parameter is quantitatively assessed through the use of relative operating characteristic (ROC) curves. Furthermore, in an effort to enhance detection sensitivity, pairs of parameters were combined, through sorting on either maximum or average values, to produce "data fusion"ROC curves. The efficacy of this approach and the complementarity of the detection techniques employed are discussed.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] NON-DESTRUCTIVE DETECTION OF WATERCORE IN APPLE WITH NUCLEAR MAGNETIC-RESONANCE IMAGING
    WANG, SY
    WANG, PC
    FAUST, M
    SCIENTIA HORTICULTURAE, 1988, 35 (3-4) : 227 - 234
  • [32] Complementary non-destructive detection of nuclear materials with passive neutron and gamma-ray detectors, and a large-volume muon tomography system
    Kamaev, Oleg
    Rand, Evan T.
    van der Ende, Bryan M.
    Thompson, Martin
    Livingstone, Steve
    Golovko, Victor V.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2019, 944
  • [33] NON-DESTRUCTIVE INTERFEROMETRIC DETECTION OF UNBONDED LAYERS
    CIELO, P
    ROUSSET, G
    BERTRAND, L
    OPTICS AND LASERS IN ENGINEERING, 1984, 5 (04) : 231 - 248
  • [34] Non-destructive detection of pits in dried plums
    Haff, RP
    Jackson, ES
    Pearson, TC
    APPLIED ENGINEERING IN AGRICULTURE, 2005, 21 (06) : 1021 - 1026
  • [35] Non-destructive Detection of Russet on Pome Fruit
    Klemm, Matthias
    Roettger, Olga
    Damerow, Lutz
    Blanke, Michael
    ERWERBS-OBSTBAU, 2017, 59 (01): : 1 - 11
  • [36] Terahertz Sensors for non-Destructive Primer Detection
    Taleb, F.
    Bunte, M.
    Taiber, J.
    Winkel, A.
    Castro-Camus, E.
    Koch, M.
    2021 46TH INTERNATIONAL CONFERENCE ON INFRARED, MILLIMETER AND TERAHERTZ WAVES (IRMMW-THZ), 2021,
  • [37] Non-destructive detection of corrosion in steel reinforcement
    Institute for the Environment, Physical Sciences and Applied Mathematics, Keele University, Staffordshire, United Kingdom
    不详
    Concr Eng Int, 2006, 2 (39-41):
  • [38] Non-destructive techniques for corrosion detection: A review
    Vasagar, Vivek
    Hassan, Mohammad K.
    Abdullah, Aboubakr M.
    Karre, Avinashkumar V.
    Chen, Beibei
    Kim, Kyoungtae
    Al-Qahtani, Noora
    Cai, Tianxing
    CORROSION ENGINEERING SCIENCE AND TECHNOLOGY, 2024, 59 (01) : 56 - 85
  • [39] A Review of Non-destructive Detection for Fruit Quality
    Gao, Haisheng
    Zhu, Fengmei
    Cai, Jinxing
    COMPUTER AND COMPUTING TECHNOLOGIES IN AGRICULTURE III, 2010, 317 : 133 - 140
  • [40] Non-destructive detection of pigments in oil painting by using terahertz tomography
    ZHANG ZhenWei
    WANG KeJia
    LEI Yong
    ZHANG ZhuoYong
    ZHAO YuanMeng
    LI ChenYu
    GU An
    SHI NingChang
    ZHAO Kun
    ZHAN HongLei
    ZHANG CunLin
    Science China(Physics,Mechanics & Astronomy), 2015, (12) : 199 - 200