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Venus Radar Mapper (VRM): Multimode radar system design

机译:金星雷达测绘仪(VRM):多模雷达系统设计

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摘要

The surface of Venus has remained a relative mystery because of the very dense atmosphere that is opaque to visible radiation and, thus, normal photographic techniques used to explore the other terrestrial objects in the solar system are useless. The atmosphere is, however, almost transparent to radar waves and images of the surface have been produced via Earth-based and orbital radars. The technique of obtaining radar images of a surface is variously called side looking radar, imaging radar, or synthetic aperture radar (SAR). The radar requires a moving platform in which the antenna is side looking. High resolution is obtained in the cross-track or range direction by conventional radar pulse encoding. In the along-track or azimuth direction, the resolution would normally be the antenna beam width, but for the SAR case, a much longer antenna (or much sharper beam) is obtained by moving past a surface target as shown, and then combining the echoes from many pulses, by using the Doppler data, to obtain the images. The radar design of the Venus Radar Mapper (VRM) is discussed. It will acquire global radar imagery and altimetry data of the surface of Venus.
机译:金星的表面仍然是一个相对神秘的事物,因为非常浓的大气层对可见辐射是不透明的,因此,用于探索太阳系中其他地面物体的常规摄影技术是无用的。但是,大气层几乎对雷达波是透明的,并且已经通过地基和轨道雷达产生了地表图像。获得表面的雷达图像的技术被不同地称为侧视雷达,成像雷达或合成孔径雷达(SAR)。雷达需要一个移动平台,天线在该平台上是侧面的。通过常规雷达脉冲编码,可以在跨轨道或范围方向上获得高分辨率。在沿航迹或方位角的方向上,分辨率通常是天线波束的宽度,但是对于SAR情况,通过移动经过如图所示的表面目标,然后将其组合起来,可以获得更长的天线(或更清晰的波束)。通过使用多普勒数据从许多脉冲中回波以获得图像。讨论了金星雷达测绘仪(VRM)的雷达设计。它将获取金星表面的全球雷达图像和测高数据。

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