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End-user experience with the SCoTSS Compton imager and directional survey spectrometer

机译:SCoTSS康普顿成像仪和定向调查光谱仪的最终用户体验

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摘要

The Silicon photomultiplier-based Compton Telescope for Safety and Security (SCoTSS) has been developed incorporating end-user requirements into the design process. The end-user group includes those responsible for mobile survey in the event of a radiological or nuclear accident, those responsible for radiation survey support to security operations at major events and at Canadian borders, as well as some of those responsible for Canadian defense applications. The SCoTSS development program has reached a technology readiness level of eight, and we are proceeding with field trials of the instrument in high-fidelity operational environments. Prospective end users have been involved in trial set up and execution, assuring applicability in their mission spaces. SCoTSS has been subject to trials involving hidden sources, heavily shielded sources, imager moving with respect to source, and complicated man-made surroundings. Our operators value high sensitivity for anomaly geolocation and mapping. End users also require an instrument which is capable of direction reconstruction in motion, as well as rapid imaging of a field of view. We have developed a "time to image" measure which allows for quantitative comparison of imagers of fundamentally different technology, where one design may have an advantage in terms of energy resolution and compactness and another design may have an advantage in terms of efficiency and cost effectiveness. We present here the performance of the SCoTSS imager in rapid direction finding. As well, we compare the time to image quantity for the SCoTSS imager and the H3D Polaris-H Quad imager where the data were taken under equivalent conditions. This quantitative measure of imaging performance can allow operators to make an informed choice of the design that meets their needs taking into consideration also weight and size as well as budgetary constraints.
机译:基于硅光电倍增管的康普顿安全与安保望远镜(SCoTSS)已开发,将最终用户需求纳入设计过程。最终用户组包括在发生放射性或核事故时负责移动调查的人员,负责在重大事件和加拿大边境为安全行动提供辐射调查支持的人员,以及负责加拿大国防应用的人员。 SCoTSS开发计划已达到8的技术准备水平,我们正在高保真操作环境中进行仪器的现场试验。潜在的最终用户参与了试验的建立和执行,以确保其任务空间的适用性。 SCoTSS经受了涉及隐藏源,严重屏蔽源,成像器相对于源移动以及复杂的人造环境的试验。我们的运营商非常重视异常地理位置和地图绘制的敏感性。最终用户还需要一种能够在运动中重建方向以及对视场进行快速成像的仪器。我们开发了一种“成像时间”度量,该度量允许对根本不同的技术的成像器进行定量比较,其中一种设计在能量分辨率和紧凑性方面可能具有优势,而另一种设计在效率和成本效益方面则具有优势。我们在这里介绍了SCoTSS成像仪在快速方向寻找中的性能。同样,我们比较了SCoTSS成像器和H3D Polaris-H Quad成像器在相同条件下拍摄数据的时间与图像数量。这种对成像性能的定量测量可以使操作人员在考虑重量,尺寸以及预算限制的情况下,根据自己的需求做出明智的设计选择。

著录项

  • 来源
    《Nuclear instruments and methods in physics research》 |2020年第21期|161683.1-161683.8|共8页
  • 作者

  • 作者单位

    Canadian Hazards Information Service Natural Resources Canada Canada Department of Physics Carleton University Canada;

    Canadian Hazards Information Service Natural Resources Canada Canada;

    Measurement Science and Standards National Research Council Canada Canada Canada Border Services Agency Canada;

    Measurement Science and Standards National Research Council Canada Canada;

    Defense Research and Development Canada Canada;

    Canada Border Services Agency Canada;

    Royal Canadian Mounted Police Canada;

    Radiation Solutions Inc. Canada;

    Canadian Hazards Information Service Natural Resources Canada Canada Measurement Science and Standards National Research Council Canada Canada Department of Physics Carleton University Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Compton imaging; Compton telescope; Scintillator; Security; Radiation detection;

    机译:康普顿成像;康普顿望远镜;闪烁体安全;放射线检测;

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