• DocumentCode
    3606199
  • Title

    Combining Radiography and Passive Measurements for Radiological Threat Localization in Cargo

  • Author

    Miller, Erin A. ; White, Timothy A. ; Jarman, Kenneth D. ; Kouzes, Richard T. ; Kulisek, Jonathan A. ; Robinson, Sean M. ; Wittman, Richard A.

  • Author_Institution
    Pacific Northwest Nat. Lab., Richland, WA, USA
  • Volume
    62
  • Issue
    5
  • fYear
    2015
  • Firstpage
    2234
  • Lastpage
    2244
  • Abstract
    Detecting shielded special nuclear material (SNM) in a cargo container is a difficult problem, since shielding reduces the amount of radiation escaping the container. Radiography provides information that is complementary to that provided by passive gamma-ray detection systems: while not directly sensitive to radiological materials, radiography can reveal highly shielded regions that may mask a passive radiological signal. Combining these measurements has the potential to improve SNM detection, either through improved sensitivity or by providing a solution to the inverse problem to estimate source properties (strength and location). We present a data-fusion method that uses a radiograph to provide an estimate of the radiation-transport environment for gamma rays from potential sources. This approach makes quantitative use of radiographic images without relying on image interpretation, and results in a probabilistic description of likely source locations and strengths. We present results for this method for a modeled test case of a cargo container passing through a plastic-scintillator-based radiation portal monitor and a transmission-radiography system. We find that a radiograph-based inversion scheme allows for localization of a low-noise source placed randomly within the test container to within 40 cm, compared to 70 cm for triangulation alone, while strength estimation accuracy is improved by a factor of six. Improvements are seen in regions of both high and low shielding, but are most pronounced in highly shielded regions. The approach proposed here combines transmission and emission data in a manner that has not been explored in the cargo-screening literature, advancing the ability to accurately describe a hidden source based on currently-available instrumentation.
  • Keywords
    gamma-ray detection; nuclear materials safeguards; radiography; solid scintillation detectors; SNM detection; cargo container; cargo radiological threat localization; cargo-screening literature; container radiation escape; data-fusion method; gamma ray source location probabilistic description; gamma ray source strength probabilistic description; hidden source based instrumentation; image interpretation; inverse problem; low-noise source localization; passive gamma-ray detection system; passive measurement; passive radiological signal; plastic-scintillator-based radiation portal monitor; radiation-transport environment; radiograph-based inversion scheme; radiographic image; radiography measurement; radiological material; shielded special nuclear material detection; source property estimation; transmission-radiography system; Attenuation; Containers; Detectors; Geometry; Inverse problems; Position measurement; Radiography; Imaging applications; radiation detectors; radiation modeling; radiography; security applications;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2015.2474146
  • Filename
    7272126