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首页> 外文期刊>International Journal of Monitoring and Surveillance Technologies Research >Assessment of Fuzzy Logic Radioisotopic Pattern Identifier on Gamma-Ray Signals with Application to Security
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Assessment of Fuzzy Logic Radioisotopic Pattern Identifier on Gamma-Ray Signals with Application to Security

机译:γ射线信号模糊逻辑放射性同位素模式识别器的评估及其在安全性中的应用

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摘要

Analysis of acquired nuclear detector gamma-ray signals for recognition of present radioisotopic signatures is crucial to national security and security applications. Identification algorithms must be accurate and rapid. Artificial intelligence is a scientific field with a variety of tools suitable to implement automated processing of nuclear signals. The use of low resolution portable detectors to measure gamma-ray signals has found a wide use in security and safeguards applications. In this paper, the fuzzy logic based analysis methodology that has been previously developed is applied and assessed on a variety of nuclear signals obtained with a low resolution scintillation detector, and more particularly a sodium iodide (NaI) detector. Various types of fuzzy membership functions are employed and their performance is assessed with regard to the number of positive detections, misses, and false alarms. Furthermore, recorded results from the set of low resolution gamma ray signals are used to estimate the detection sensitivity for each membership function. Results demonstrate the overall effectiveness of the fuzzy logic based identifier, and consist of the main course for the assessment of each membership function. Furthermore, comparison of results designates the triangular membership function as the best membership shape for this type of detector signals.
机译:分析获得的核探测器伽马射线信号以识别当前的放射性同位素特征对于国家安全和安保应用至关重要。识别算法必须准确,快速。人工智能是一个科学领域,具有各种工具,可用于实现核信号的自动处理。使用低分辨率便携式探测器测量伽马射线信号已在安全和保障应用中得到广泛使用。在本文中,对已经用低分辨率闪烁检测器(尤其是碘化钠(NaI)检测器)获得的各种核信号应用并评估了先前已经开发的基于模糊逻辑的分析方法。使用各种类型的模糊隶属函数,并根据肯定检测,未命中和错误警报的数量评估其性能。此外,来自一组低分辨率伽马射线信号的记录结果用于估计每个隶属函数的检测灵敏度。结果证明了基于模糊逻辑的标识符的整体有效性,并且包括评估每个隶属函数的主要课程。此外,结果比较将三角形隶属函数指定为此类检测器信号的最佳隶属形状。

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