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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Development and experimental validation of a fast neutron spectrometry system based on Superheated Drop Detectors (SDDs) operating under different external pressures
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Development and experimental validation of a fast neutron spectrometry system based on Superheated Drop Detectors (SDDs) operating under different external pressures

机译:基于超热滴探测器(SDDS)在不同外部压力下运行的快速中子光谱系统的开发和实验验证

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In this paper, the spectrum of ~(241)Am-Be neutron source was measured by developing and using a neutron spectrometer system based on Superheated Drop Detectors (SDDs) operating under various external pressures. The system consisted of a set of SDDs fabricated by in situ polymerization method. The external pressures were controlled by the amount of Freon-12 added onto the surface of detectors. Also, this system includes a Geant4 simulation application capable of calculating the response of SDDs made from various materials at various temperatures and pressures. Ultimately, the system contained a customized program to design and train the Adaptive Network-based Fuzzy Inference System (ANFIS) for fast neutron spectrum unfolding. This program has the capability of designing the ANFIS with different rule structures and various parameters of the fuzzy inference system. In the present study, the simulation application was used to calculate the response matrix of five SDDs under external pressures of 0.86, 1.93, 2.72, 3.48, and 3.85 atm in 20 energy bins from 0.5 MeV to 514 MeV at 28 °C. Furthermore, the customized program was utilized to design a FIS structure using the FCM method with six membership functions for each input. Neutron spectra published in the IAEA technical reports series no. 403 and 318 were utilized as the Target data. The response matrix was used to obtain the input data of ANFIS by multiplying the target data by the response matrix. 99% of data (373 out of 377) was considered as the train data and the rest as the test data. After fabrication of SDDs, they were exposed to an ~(241)Am-Be neutron source. The average numbers of the formed bubbles in SDDs with different external pressures were introduced to the trained ANFIS, and finally, the unfolded spectrum was the output of the ANFIS. The RMSE for the measured neutron spectrum was the acceptable value of 0.016. The reasonable agreement between the unfolded and reference ~(241)Am-Be neutron spectra shows that the developed neutron spectrometry system can be a suitable candidate for fast neutron spectrometry.
机译:在本文中,通过在各种外部压力下操作的过热的液滴检测器(SDD),通过开发和使用中子谱仪系统来测量〜(241)am-中子源的光谱。该系统由一组由原位聚合方法制造的SDD组成。外部压力由添加到探测器表面上的氟利昂-12的量来控制。此外,该系统包括能够计算各种温度和压力的各种材料制成的SDD的响应的GEANT4仿真应用。最终,该系统包含定制程序来设计和培训基于自适应网络的模糊推理系统(ANFIS),以进行快速中子谱展开。该程序具有设计具有不同规则结构的ANFI和模糊推理系统的各种参数的能力。在本研究中,模拟应用用于在20.86,1.93,2.72,3.48和3.85atm的外部压力下在20.5meV至514meV的外部压力下计算5个SDD的响应矩阵。此外,使用定制程序使用FCM方法设计FIS结构,每个输入为每个输入六个隶属函数。中子谱发表于原子能机构技术报告系列号。 403和318用作目标数据。响应矩阵用于通过将目标数据乘以响应矩阵来获得ANFI的输入数据。 99%的数据(377个)被认为是火车数据,其余作为测试数据。在制造SDD后,将它们暴露于〜(241)am-中子源。将具有不同外部压力的SDDS中形成的气泡的平均数量引入训练的ANFIS,最后,展开光谱是ANFI的输出。测量中子谱的RMSE是可接受的值为0.016。展开和参考〜(241)am-中子谱之间的合理一致表示,发育中子光谱系统可以是用于快速中子光谱法的合适候选者。

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