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VISAR: A next generation interferometric radar for venus exploration

机译:VISAR:金星探索的下一代干涉雷达

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Magellan, a NASA mission to Venus in the early 1990s, mapped nearly the entire surface of Venus with an S-band (12 cm) synthetic aperture radar and microwave radiometer and made radar altimeter measurements of the topography, [1]. These measurements revolutionized our understanding of the geomorphology, geology and geophysical processes that have shaped the evolution of the surface of Venus. However, the lack of finer resolution imagery and topography of the surface than that obtained by the Magellan mission has hampered the definitive answer to key questions concerning the processes and evolution of the surface of Venus. The Venus Emissivity, Radio Science, InSAR Topography And Spectroscopy (VERITAS) Mission is a proposed mission to Venus designed to obtain high resolution imagery and topography of the surface using an X-band radar configured as a single pass radar interferometer (called VISAR) coupled with a multispectral NIR emissivity mapping sensor.
机译:Magellan是20世纪90年代初到金星的NASA使命,几乎将金星的整个表面与S频段(12厘米)合成孔径雷达和微波辐射计进行绘制,并制造了地形的雷达高度计测量,[1]。这些测量彻底改变了我们对形成金星表面的演变的地貌,地质和地球物理过程的理解。然而,缺乏更精细的分辨率图像和表面地形的地形比通过Magellan Mission获得的地形阻碍了关于金星表面的过程和演变的关键问题的明确答案。金星发射率,无线电科学,insar地形和光谱(Veritas)任务是一个拟议的金星任务,旨在使用配置为单通雷达干涉仪(称为VISAR)的X波段雷达获得高分辨率图像和表面的地形具有多光谱NIR发射率映射传感器。

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