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2022-03-13
摘要翻译:
提出并论证了一种基于时域鬼影成像的焦平面三维成像新方法。该方法充分利用了时域鬼影成像的优点,使慢积分相机在序贯洪水照明和焦平面检测的框架下具有三维表面成像的能力。传统摄像机成像容易丢失三维物体的深度信息,但通过接收信号与参考信号之间的时间相关性,可以高分辨率地重建三维物体的深度信息。与单次拍摄获得的二维(2D)投影图像相结合,可以实现物体的3D图像。本文通过理论分析和数值实验验证了这种焦平面三维成像方法的可行性和性能。
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英文标题:
《A new focal-plane 3D imaging method based on temporal ghost imaging》
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作者:
Zunwang Bo, Wenlin Gong and Shensheng Han
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最新提交年份:
2018
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分类信息:

一级分类:Electrical Engineering and Systems Science        电气工程与系统科学
二级分类:Image and Video Processing        图像和视频处理
分类描述:Theory, algorithms, and architectures for the formation, capture, processing, communication, analysis, and display of images, video, and multidimensional signals in a wide variety of applications. Topics of interest include: mathematical, statistical, and perceptual image and video modeling and representation; linear and nonlinear filtering, de-blurring, enhancement, restoration, and reconstruction from degraded, low-resolution or tomographic data; lossless and lossy compression and coding; segmentation, alignment, and recognition; image rendering, visualization, and printing; computational imaging, including ultrasound, tomographic and magnetic resonance imaging; and image and video analysis, synthesis, storage, search and retrieval.
用于图像、视频和多维信号的形成、捕获、处理、通信、分析和显示的理论、算法和体系结构。感兴趣的主题包括:数学,统计,和感知图像和视频建模和表示;线性和非线性滤波、去模糊、增强、恢复和重建退化、低分辨率或层析数据;无损和有损压缩编码;分割、对齐和识别;图像渲染、可视化和打印;计算成像,包括超声、断层和磁共振成像;以及图像和视频的分析、合成、存储、搜索和检索。
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英文摘要:
  A new focal-plane three-dimensional (3D) imaging method based on temporal ghost imaging is proposed and demonstrated. By exploiting the advantages of temporal ghost imaging, this method enables slow integrating cameras have an ability of 3D surface imaging in the framework of sequential flood-illumination and focal-plane detection. The depth information of 3D objects is easily lost when imaging with traditional cameras, but it can be reconstructed with high-resolution by temporal correlation between received signals and reference signals. Combining with a two-dimensional (2D) projection image obtained by one single shot, a 3D image of the object can be achieved. The feasibility and performance of this focal-plane 3D imaging method have been verified through theoretical analysis and numerical experiments in this paper.
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PDF链接:
https://arxiv.org/pdf/1805.06481
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