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The sensitivity of synthetic aperture radiometers for remote sensing applications from space

机译:合成孔径辐射计在太空遥感应用中的灵敏度

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摘要

Aperture synthesis offers a means of realizing the full potential of microwave remote sensing from space by helping to overcome the limitations set by antenna size. The result is a potentially lighter, more adaptable structure for applications in space. However, because the physical collecting area is reduced, the signal-to-noise ratio is also reduced and may adversely affect the radiometric sensitivity. Sensitivity is an especially critical issue for measurements from low Earth orbit because the motion of the platform (about 7 km/s) limits the integration time available for forming an image. The purpose of this paper is to develop expressions for the sensitivity of remote sensing systems which use aperture synthesis. The objective is to develop basic equations general enough to be used to obtain the sensitivity of the several variations of aperture synthesis which have been proposed for sensors in space. The conventional microwave imager (a scanning total power radiometer) is treated as a special case, and the paper concludes with a comparison of three synthetic aperture configurations with the conventional imager.
机译:孔径合成通过帮助克服天线尺寸设置的限制,提供了一种从太空中充分利用微波遥感的潜力的方法。结果是结构更轻巧,更适应太空应用。但是,由于减少了物理收集区域,所以信噪比也降低了,并且可能对辐射灵敏度产生不利影响。对于低地球轨道的测量,灵敏度是一个特别关键的问题,因为平台的运动(约7 km / s)限制了可用于形成图像的积分时间。本文的目的是为使用孔径合成的遥感系统的灵敏度开发表达式。目的是开发足够通用的基本方程,以用于获得已针对空间传感器提出的孔径合成的几种变化的灵敏度。常规微波成像仪(扫描总功率辐射计)被视为一种特殊情况,并且本文最后对三种合成孔径配置与常规成像仪进行了比较。

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