计算机科学
光圈(计算机存储器)
全息术
光学
极高频率
微波成像
毫米
高保真
微波食品加热
编码孔径
合成孔径雷达
忠诚
衍射
物理
计算机视觉
声学
电信
探测器
作者
Jonah N. Gollub,Okan Yurduseven,Kenneth P. Trofatter,Daniel Arnitz,Mohammadreza F. Imani,Timothy Sleasman,Michael Boyarsky,Alec Rose,Andreas Pedross-Engel,Hayrettin Odabasi,Tomáš Zvolenský,Guy Lipworth,David J. Brady,Daniel L. Marks,Matthew S. Reynolds,D. R. Smith
摘要
Abstract We demonstrate a low-profile holographic imaging system at millimeter wavelengths based on an aperture composed of frequency-diverse metasurfaces. Utilizing measurements of spatially-diverse field patterns, diffraction-limited images of human-sized subjects are reconstructed. The system is driven by a single microwave source swept over a band of frequencies (17.5–26.5 GHz) and switched between a collection of transmit and receive metasurface panels. High fidelity image reconstruction requires a precise model for each field pattern generated by the aperture, as well as the manner in which the field scatters from objects in the scene. This constraint makes scaling of computational imaging systems inherently challenging for electrically large, coherent apertures. To meet the demanding requirements, we introduce computational methods and calibration approaches that enable rapid and accurate imaging performance.
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