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Passive mm-wave imaging from UAVs using aperture synthesis

机译:使用孔径合成的无人机无源毫米波成像

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Passive imaging using mm-waves offers very significant advantages in scientific and military surveillance. However, the relatively long wavelengths mean that for the resolutions that are typically sought, the input aperture of the imager needs to be quite large; typically in excess of one metre. Deployment of conventional dish antennae of these dimensions on small aircraft is highly problematic. The use of snapshot synthetic aperture interferometric radiometry (SAIR) offers an attractive route to integrating a two-dimensional antenna array into the structure of an aircraft so that the transverse effective dimensions of the antenna can be almost as large as the aircraft. We report here a study into the feasibility of deployment of a SAIR on unmanned airborne vehicles and the achievable performance parameters. Critical considerations are the achievement of acceptable sensitivity and angular resolution from a SAIR that does not require excessive complexity. It is shown that traditional approaches based on fully sampling the spatial frequencies in the scene are unable to simultaneously meet all of these criteria, but that a SAIR based on thinned sampling of the spatial frequencies shows promise.
机译:使用毫米波的被动成像在科学和军事监视中具有非常重要的优势。但是,相对较长的波长意味着对于通常需要的分辨率,成像器的输入孔径需要非常大。通常超过一米。在小型飞机上部署这些尺寸的常规碟形天线存在很大问题。快照合成孔径干涉辐射计(SAIR)的使用为将二维天线阵列集成到飞机结构中提供了一条诱人的途径,从而使天线的横向有效尺寸几乎可以与飞机一样大。我们在这里报告了对在无人机上部署SAIR的可行性以及可达到的性能参数的研究。关键考虑因素是通过SAIR实现可接受的灵敏度和角度分辨率,而不需要过多的复杂性。结果表明,基于对场景中的空间频率进行充分采样的传统方法无法同时满足所有这些标准,但是基于对空间频率进行稀疏采样的SAIR则显示出了希望。

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