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Modeling minimum detectable activity as a function of detector speed

机译:根据探测器速度建模最小可检测活动

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摘要

Purpose A radiation detector's sensitivity is important when designing survey plans. A measure of sensitivity is minimum detectable activity (MDA) which is the lowest amount of activity required for a signal to be distinguished above background. It has been known for some time that the efficiency of a moving detector can be improved by slowing the speed of travel. The Multi-Agency Radiation Survey and Site Investigation Manual describes but does not quantify this effect. Decreased efficiency at higher speeds results in higher MDAs and thus less sensitive detectors. The purpose of this research is to specifically define the relationship between detector MDA and speed. Methods Python was employed to calculate solid angle from equations developed by Masket and MCNP6.1 simulations were used to determine detection efficiency for a moving detector. Using these results efficiency as a function of detector travel speed was fit to a modified four-parameter logistic function (M4PL). Results The result of this work is a well defined relationship that can be used to predict MDA as a function of speed. The relationship can also be used by operators to determine the optimum speed needed to meet a predefined MDA. Conclusion Understanding this relationship between detector speed and efficiency will improve detector performance in remediation efforts and national security search operations. The M4PL function developed in this research allows optimizing remediation and wide-area radiation survey activities by setting maximum survey speed to meet a predetermined MDA.
机译:目的,在设计调查计划时,辐射探测器的灵敏度很重要。灵敏度的衡量标准是最小可检测活动(MDA),其是以上方背景的信号所需的最低活动量。已经知道,通过减慢行程速度,可以提高移动检测器的效率。多机构辐射调查和现场调查手册描述但没有量化这种效果。在较高速度下降低效率导致更高的MDA,从而导致敏感的探测器。本研究的目的是具体地定义探测器MDA和速度之间的关系。方法采用Python计算由Masket和MCNP6.1模拟的等式计算实体角度,用于确定移动检测器的检测效率。使用这些结果效率随着检测器的函数而符合修改的四参数逻辑函数(M4PL)。结果这项工作的结果是一个明确的关系,可用于预测MDA作为速度的函数。操作者也可以使用该关系来确定满足预定义MDA所需的最佳速度。结论了解探测器速度与效率之间的这种关系将改善修复工作中的探测器性能和国家安全搜索操作。该研究中开发的M4PL功能允许通过设定最大测量速度来满足预定MDA来优化修复和广域辐射调查活动。

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