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A new method for measuring tracks density in CR-39 detectors by compensating for overlapping tracks

机译:通过补偿重叠轨道来测量CR-39检测器中轨道密度的新方法

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摘要

CR-39 nuclear track detectors have been used as an efficient radon monitoring system. Exposing these detectors to radon would result in tracks where ever particles hit the surface of the detector. Natural radioactivity of alpha particles (radon concentration) is measured based on the count of these tracks on CR-39 detector. Counting these tracks by eye is not an easy task especially when the density of the tracks is high. Automated tracks counting systems are attractive solution for this problem. However, as the density of tracks increases the accuracy of these methods deteriorates. This is due to the fact that overlapped tracks are counted as one track during the segmentation process resulting in an underestimation of the real count of the tracks. This work proposes a new image processing based automated approach for tracks counting. This new automated approach solves the problem of counting overlapping tracks by approximating their number and then adjusting the final count of tracks by compensating for those uncounted tracks. The experimental results show that the proposed approach reduces the counting percentage error from 5.64% to 2.54% by solving the counting problem of the overlapped tracks.
机译:CR-39核径迹探测器已用作有效的ra监测系统。将这些检测器暴露在would气中会导致在任何粒子撞击检测器表面的轨道。根据CR-39检测器上这些迹线的计数,测量α粒子的自然放射性(rad浓度)。用肉眼计数这些轨迹不是一件容易的事,尤其是在轨迹密度很高时。自动轨道计数系统是解决此问题的有吸引力的解决方案。但是,随着磁道密度的增加,这些方法的准确性下降。这是由于以下事实:在分割过程中,重叠的磁道被计为一个磁道,从而导致磁道的实际计数被低估。这项工作提出了一种新的基于图像处理的自动方法来进行轨道计数。这种新的自动化方法通过近似重叠轨道的数量来解决计数重叠轨道的问题,然后通过补偿那些未计数的轨道来调整轨道的最终计数。实验结果表明,该方法通过解决重叠轨道的计数问题,将计数百分比误差从5.64%降低到2.54%。

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