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Improving Activity Estimation in Passive Gamma Scanning for Radioactive Waste Drums

机译:放射性废话鼓自动伽马扫描活动估计

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A method to improve radioactive waste drum activity estimation in Segmented Gamma Scanning (SGS) systems was developed for homogenous content. We describe a method to quantify the activity of spatially distributed gamma-emitting isotopes ('hot spots') in homogenous content waste drums without the use of a collimator. Instead of averaging all the detector's readings we treat it as many different spatial samples as if we have multiple detectors surrounding the waste drum ("virtual detectors"). From these readings, we form a general linear model. Next, we derive the Maximum Likelihood Estimator (MLE) for the multiple sources position and activity. We solve this hyper-dimensional search problem using an Alternating Projections (AP) technique which transforms the problem into a simpler one-dimensional maximization problem. We tested this method using a mathematical simulation with a various number of sources, at random activities and positions for several energy bands. The preliminary results are consistent and show large improvement of the accuracy with comparison to industrial SGS systems and the same accuracy as new methods which exploits the spatial samples. Furthermore, since this method eliminates the need for heavy led collimator, none of the sources is blocked for the whole measurement period, which provides increased count rates and decreases the total measurement time.
机译:为均质含量开发了一种改善分段γ扫描(SGS)系统中的放射性废话滚筒活性估计的方法。我们描述了一种在不使用准直器的情况下量化在均匀含量废滚筒中的空间分布γ发射同位素('热点')的方法。而不是平均所有检测器的读数,我们将其视为许多不同的空间样本,就像我们有多个探测器围绕废鼓(“虚拟探测器”)一样。从这些读数中,我们形成一般的线性模型。接下来,我们导出多个源位置和活动的最大似然估计器(MLE)。我们使用交替投影(AP)技术来解决这个超级搜索问题,该技术将问题转换为更简单的一维最大化问题。我们使用数学仿真在随机活动和几个能量频带的位置测试了这种方法。初步结果是一致的,并表现出与工业SGS系统的比较的准确性的大量改善,以及作为利用空间样本的新方法的准确性相同。此外,由于该方法消除了对重型LED准直器的需要,因此对于整个测量时段都没有阻断源,其提供增加的计数率并降低总测量时间。

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