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首页> 外文期刊>Journal of Infrared, Millimeter, and Terahertz Waves >Active Sparse-Aperture Millimeter-Wave Imaging Using Digital Correlators
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Active Sparse-Aperture Millimeter-Wave Imaging Using Digital Correlators

机译:使用数字相关器的主动稀疏孔径毫米波成像

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摘要

Millimeter-wave imaging systems have desirable characteristics, particularly in their ability to form images of objects obscured by various barrier materials. However, the relatively long wavelength of the millimeter-band implies a penalty in angular resolution, usually compensated using large-aperture systems. Synthesized apertures provide the desired collecting area with a reduced number of discrete detectors. In this research we designed, built, and characterized the performance of a prototype sparse-aperture imaging system, utilizing an active 94 GHz source. Discrete sensors were used to sample the radiation field backscattered from the object. The signals were down-converted using heterodyne receivers with digital in-phase and quadrature detection. Signal correlations were performed using the digitized data sets to reconstruct millimeter-wave images. Image-quality performance was experimentally evaluated using four different non-redundant aperture configurations, with good agreement to the theoretical expressions. The feasibility of digital electronic-focusing correction was also demonstrated over an object range from 400 to 700 mm.
机译:毫米波成像系统具有理想的特性,特别是在其形成被各种阻隔材料遮盖的物体的图像的能力方面。但是,毫米波段的相对较长的波长意味着通常使用大光圈系统进行补偿的角度分辨率的损失。合成的孔提供了所需的收集区域,减少了离散检测器的数量。在这项研究中,我们利用94 GHz有源信号源设计,构建并表征了稀疏孔径原型成像系统的性能。离散传感器用于采样从物体反向散射的辐射场。使用具有数字同相和正交检测功能的外差接收器对信号进行下变频。使用数字化数据集执行信号相关以重建毫米波图像。使用四种不同的非冗余光圈配置对图像质量性能进行了实验评估,与理论表达式吻合良好。还证明了在400至700 mm的物体范围内进行数字电子聚焦校正的可行性。

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