用于放射性废物容器成像的康普顿相机的设计研究模拟

J. McKisson, D. Henderson, K.E. Neelands, P. Haskins
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引用次数: 1

摘要

持续的研究和开发工作正在进行,以提高准确性,最大限度地减少昂贵的高估,并增加放射性废物容器的非破坏性分析(NDA)的分析吞吐量。能够定位和识别废物容器中源分布的成像探测器可以改进从NDA系统获得的估计。本文介绍了基于仿真的系统设计研究中所采用的数据处理和分析方法。首先进行模拟,对一个大的、多参数的设计空间进行采样,然后对候选几何形状进行细化,以证明其具有可接受的性能。为了处理预期的数据量,并允许有效的搜索和分析,设计了一个系统来组织模拟和分析工作,跟踪数据文件,并构建数据库。对数据进行评估,以确定设计参数与性能之间的函数关系。开发并应用了一组性能指标来比较模拟结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design study simulations of a Compton camera for radioactive waste container imaging
Continued research and development efforts are being pursued to improve accuracy, minimize costly overestimates, and increase analysis throughput for non-destructive analysis (NDA) of radioactive waste containers. An imaging detector capable of locating and identifying source distributions in a waste container can improve the estimates obtained from an NDA system. This paper presents the approach taken to data handling and analysis for a simulation-based system design study. Simulations were first performed to sample a large, multiparameter design space and were then refined to focus on candidate geometries that proved to have acceptable performance. To handle the anticipated volume of data and to allow efficient search and analysis, a system was devised to organize the simulation and analysis effort, track data files, and construct a data base. Data were evaluated to determine functional relationships between design parameters and performance. A set of performance metrics were developed and applied to compare the results of the simulations.
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