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宇宙线μ子散射成像技术研究进展 被引量:3
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作者 何伟波 肖洒 +2 位作者 帅茂兵 赖新春 安琪 《核电子学与探测技术》 CAS 北大核心 2016年第3期297-303,共7页
为进一步深入开展宇宙线μ子散射成像技术研究,发挥其在国土安全、防范核走私、核不扩散等方面的重要作用。论文综述了国内外在宇宙线μ子散射成像技术上的研究进展情况,提出了一些存在的问题以及未来的研究方向。
关键词 宇宙线μ子散射成像 核不扩散 综述
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宇宙射线μ子探测裂变核材料的成像算法 被引量:4
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作者 王烈铭 王红艳 +2 位作者 刘志英 杨宏伟 庞洪超 《核电子学与探测技术》 CAS CSCD 北大核心 2011年第8期874-877,共4页
宇宙射线μ子探测作为一种清洁源、深穿透、真正识别裂变核材料的新方法正在世界范围内日益受到重视,我国也在反恐领域开展此项研究,论文介绍了研究工作中图像重建算法(PoCA算法、期望最大化算法)以及算法模拟实验结果和分析,模拟结果... 宇宙射线μ子探测作为一种清洁源、深穿透、真正识别裂变核材料的新方法正在世界范围内日益受到重视,我国也在反恐领域开展此项研究,论文介绍了研究工作中图像重建算法(PoCA算法、期望最大化算法)以及算法模拟实验结果和分析,模拟结果初步证明了宇宙线μ子进行特殊核材料检测的可行性以及图像重建算法的有效性。 展开更多
关键词 宇宙线μ子成像 PoCA算法 期望最大化算法 GEANT4
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Fast forward modeling of muon transmission tomography based on model voxelization ray energy loss projection
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作者 Zhang Rong-Qing Xi Zhen-Zhu +2 位作者 Liu Wei Wang He Yang Zi-Yan 《Applied Geophysics》 SCIE CSCD 2022年第3期395-408,471,共15页
To solve the problems associated with low resolution and high computational effort infinite time,this paper proposes a fast forward modeling method for muon energy loss transmission tomography based on a model voxeliza... To solve the problems associated with low resolution and high computational effort infinite time,this paper proposes a fast forward modeling method for muon energy loss transmission tomography based on a model voxelization energy loss projection algorithm.First,the energy loss equation for muon transmission tomography is derived from the Bethe–Bloch formula,and the imaging region is then dissected into several units using the model voxelization method.Thereafter,the three-dimensional(3-D)imaging model is discretized into parallel and equally spaced two-dimensional(2-D)slices using the model layering method to realize a dimensional reduction of the 3-D volume data and accelerate the forward calculation speed.Subsequently,the muon energy loss transmission tomography equation is discretized using the ray energy loss projection method to establish a set of energy loss equations for the muon penetration voxel model.Finally,the muon energy loss values at the outgoing point are obtained by solving the projection coefficient matrix of the ray length-weighted model,achieving a significant reduction in the number of muons and improving the computational efficiency.A comparison of our results with the simulation results based on the Monte Carlo method verifies the accuracy and effectiveness of the algorithm proposed in this paper.The metallic mineral identification tests show that the proposed algorithm can quickly identify high-density metallic minerals.The muon energy loss response can accurately identify the boundary of the anomalies and their spatial distribution characteristics. 展开更多
关键词 Muon transmission tomography model voxelization ray energy loss projection fast forward modeling Monte Carlo simulation
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