首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Identification of radionuclides for the spectroscopic radiation portal monitor for pedestrian screening under a low signal-to-noise ratio condition
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Identification of radionuclides for the spectroscopic radiation portal monitor for pedestrian screening under a low signal-to-noise ratio condition

机译:在低信噪比条件下识别用于行人筛查的光谱辐射门禁监测器的放射性核素

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摘要

The spectroscopic radiation portal monitor (SPM) is widely used for homeland security. Many research groups are studying the radionuclide identification method which is one of the most important factors in the performance of the SPM using the large size of a thallium activated sodium iodide (NaI(Tl)) detector. In this study, we developed the radionuclide identification method for the SPM for pedestrian screening using a single NaI(Tl) detector that is small in size (2 in.), which is much smaller than those in the existing studies under the low signal-to-noise-ratio (SNR) condition. From the anomalous radionuclide spectrum, the noise component was effectively reduced by the wavelet decomposition and the proposed background subtraction method, and the signal component was enhanced by the principal component analysis. Finally, peak locations which have been determined by the peak search algorithm with a valley check method were compared with a pre-calibrated and constructed radionuclide database. To verify the radiation identification performance of the proposed method, experiments with various kinds of sources (~(137)Cs, ~(133)Ba, ~(22)Na, and ~(57)Co) and different SNR values (from distances of 10-150 cm and for scan times of 1-5 s) were performed. Although the high-SNR condition was explored as well, most experiments were conducted under the low-SNR condition to verify the robustness and reproducibility of the proposed algorithm. The results showed that over 98.3% of the single radionuclide detection rate was achieved regardless of which radionuclides were used, up to 50 cm under the worst SNR condition (1 s of scan time) and up to 90 cm under the best SNR condition (5 s of scan time). Furthermore we achieved accurate identification of multiple radionuclides at 40 cm with only 1 s of scan time. The results show that the proposed algorithm is competitive with the commercial method and our radionuclide identification method can be successfully applied to the SPM for pedestrian monitoring, with a small detector size and a short scan time.
机译:光谱辐射门户监控器(SPM)被广泛用于国土安全。许多研究小组正在研究放射性核素识别方法,这是使用大尺寸activated活化碘化钠(NaI(Tl))检测器在SPM性能中最重要的因素之一。在这项研究中,我们开发了一种使用单个NaI(Tl)检测器对SPM进行行人筛查的放射性核素识别方法,该检测器尺寸小(2英寸),比在低信号下的现有研究中的检测器小得多。信噪比(SNR)条件。从异常的核素谱中,通过小波分解和提出的背景减法有效地降低了噪声分量,并且通过主分量分析增强了信号分量。最后,将通过峰搜索算法使用谷值检查法确定的峰位置与预先校准并构建的放射性核素数据库进行比较。为了验证所提出方法的辐射识别性能,使用各种来源(〜(137)Cs,〜(133)Ba,〜(22)Na和〜(57)Co)和不同的SNR值(从距离算起)进行实验进行10-150 cm的扫描和1-5 s的扫描时间。尽管也探讨了高SNR条件,但大多数实验都是在低SNR条件下进行的,以验证所提出算法的鲁棒性和可重复性。结果表明,无论使用哪种放射性核素,单个放射性核素的检出率均达到98.3%以上,在最差SNR条件(扫描时间为1 s)下可达50 cm,在最佳SNR条件下可达90 cm(5)。秒的扫描时间)。此外,我们仅用1 s的扫描时间即可准确识别40 cm处的多个放射性核素。结果表明,所提出的算法与商业方法相比具有竞争优势,并且我们的放射性核素识别方法可以成功地应用于SPM的行人监控,检测器尺寸小且扫描时间短。

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