在从低角度希尔伯特图重建相位结构问题中使用格什伯格-帕普利斯方法的可能性

Q4 Computer Science
E. Arbuzov, V. Arbuzov, Yu. N. Dubnishchev, O. Zolotukhina, M. Lapikov, V. Lukashov
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引用次数: 0

摘要

本文讨论了用 Gershberg-Papulis 方法处理小视角希尔伯特图以恢复相位物体折射率的可能性。该方法包括从在傅里叶平面上估计函数到在坐标空间上估计函数的迭代转换,并利用先验信息进行调整。函数的频谱是在整个频率平面上确定的,这是一个迭代过程的结果。利用已知的四个角度的 Radon 数据,使用 Gershberg-Papulis 方法对各种测试函数的折射率重建进行了数值模拟。在高速拍摄模式(每秒多达 2000 帧)下,使用基于升级版 IAB-463M 阴影设备的四角层析成像复合装置,对反应介质(火焰)的希尔伯特诊断实例进行了实验研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Possibility of Using the Gershberg-Papoulis Method in the Problem of Phase Structure Reconstructing from Low-angle Hilbertograms
The possibility of processing small-view hilbertograms by the Gershberg-Papulis method to restore the refractive index of phase objects is discussed. The method consists in iterative transitions from estimating a function in the Fourier plane to estimating it in a coordinate space with an adjustment using a priori information. The spectrum of the function is determined on the entire frequency plane as an iterative process result Numerical simulation of the refractive index reconstruction for various test functions was performed using the Gershberg-Papulis method using Radon data known for four angles. Experimental studies on the Hilbert diagnostics example of reacting media (flames) in a high-speed shooting mode (up to 2000 frames per second) were performed using a four-angle tomographic complex implemented on the basis of an upgraded IAB-463M shadow device.
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来源期刊
Scientific Visualization
Scientific Visualization Computer Science-Computer Vision and Pattern Recognition
CiteScore
1.30
自引率
0.00%
发文量
20
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