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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Attribution of gamma-ray background collected by a mobile detector system to its surroundings using panoramic video
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Attribution of gamma-ray background collected by a mobile detector system to its surroundings using panoramic video

机译:使用全景视频将移动探测器系统收集的伽玛射线背景归因于其周围环境

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摘要

Mobile radiation detector systems are important tools for detecting radiological and nuclear sources outside of regulatory control, but due to their mobility, they are subject to complex and varying backgrounds in most realistic operational scenarios. Recent work has found correlations between non-radiological contextual information and gamma-ray spectral features that can be used to decrease false alarm rates, however a more complete understanding of background source terms has been elusive. A measurement campaign developed a full radiological characterization of a controlled facility that roughly corresponded to two city blocks. As part of the campaign, the Radiological Multi-sensor Analysis Platform (RadMAP) collected extensive multi-sensor data. In this work, RadMAP's panoramic video data were used to visually identify several different materials and quantify the detector response to each material. A linear model was fit between the material responses and radiological features, and the results demonstrate reasonable agreement with ground truth flux measurements for each material. This paper will describe the data collection, processing, and analysis of the gamma-ray and video data from RadMAP. The paper will conclude with perspectives on the applicability of such a method to less controlled environments both with respect to achieving better understanding the sources of variability of background radiation in urban environments and whether such methods could be leveraged in operational scenarios.
机译:移动辐射探测器系统是用于在监管控制范围之外探测放射源和核源的重要工具,但是由于它们的机动性,它们在大多数实际操作场景中会遇到复杂且变化的背景。最近的工作已发现非​​放射线语境信息与伽玛射线光谱特征之间的关联可用于降低误报率,但是,对背景源术语的更全面理解却难以捉摸。一项测量运动对受控设施进行了全面的放射学表征,该设施大致对应于两个城市街区。作为活动的一部分,放射学多传感器分析平台(RadMAP)收集了广泛的多传感器数据。在这项工作中,RadMAP的全景视频数据用于视觉识别几种不同的材料,并量化检测器对每种材料的响应。物质反应和放射学特征之间拟合出线性模型,结果表明每种物质的地面真实通量测量结果都合理一致。本文将描述RadMAP的伽马射线和视频数据的数据收集,处理和分析。本文将以这种方法在不受控制的环境中的适用性的角度得出结论,既可以更好地了解城市环境中背景辐射的变化源,又可以在操作场景中利用这种方法。

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