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Study on Sequential Bayesian Radionuclide Identification Approach: Threshold and Detection Capability

机译:序贯贝叶岩放射性核素识别方法的研究:阈值和检测能力

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Radionuclide detection is a key step in the control of radioactive materials. Influenced by detector performance, ambient background noise and data analysis model, fast identification of radionuclides is a great challenge faced by traditional gamma-ray spectrometry analysis methods. This paper introduces the signal processing model and basic inspection strategy of nuclide recognition method based on statistical test, a Monte Carlo method to select the test threshold is proposed, and a radionuclide characteristic gamma-ray identifier for137Cs based on Wald sequential probability ratio test is constructed. In the end, the detection performance of the identifier is analyzed through emulate experiment.
机译:放射性核素检测是控制放射性物质的关键步骤。受探测器性能,环境背景噪声和数据分析模型的影响,快速鉴定放射性核素是传统伽马射线光谱分析方法面临的巨大挑战。本文介绍了基于统计测试的核素识别方法的信号处理模型和基本检查策略,提出了一种选择测试阈值的蒙特卡罗方法,以及用于的放射性核素特性伽马射线标识符 137 构建了基于WALD顺序概率比测试的CS。最后,通过模拟实验分析标识符的检测性能。

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