基于GSSR雷达的月球地形测绘新模式

S. Hensley, E. Gurrola, L. Harcke, M. Slade, K. Quirk, M. Srinivasan, Clement G. Lee, S. Yun, J. Jao, B. Wilson, E. D. De Jong, N. Marechal, L. Weintraub, Richard Dickinson, R. Bloom, G. Karamyan, A. Lilje
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引用次数: 8

摘要

自20世纪90年代中期以来,利用金石太阳系雷达(Goldstone Solar System radar, GSSR)的地球雷达干涉测量技术绘制月球地形图已经进行了几次。2008年,我们在这个会议上报告了在水平标高40米的情况下,生成高度精度约为4米的月球地形图。此后,GSSR雷达进行了改进,允许40 MHz带宽成像,从而获得了距离为4 m,方位角为5 m的图像和干涉图。长合成孔径持续时间约为90分钟,需要从距离/多普勒图像形成技术迁移到聚光灯模式处理和自动聚焦方法。改进的分辨率图像应允许生成具有两倍空间分辨率的地形图,并具有大致相同的高度精度。再加上日本和美国轨道卫星最近提供了新的月球表面激光雷达地形图,雷达生成的地图产品的大地测量控制可以大大改善。本文将讨论GSSR的硬件和软件改进,并介绍一些新的高分辨率产品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lunar topographic mapping using a new high resolution mode for the GSSR radar
Mapping the Moon's topography using Earth based radar interferometric measurements by the Goldstone Solar System Radar (GSSR) has been done several times since the mid 1990s. In 2008 we reported at this conference the generation of lunar topographic maps having approximately 4 m height accuracy at a horizontal posting of 40 m. Since then GSSR radar has been improved to allow 40 MHz bandwidth imaging and consequently obtained images and interferograms with a resolution of about 4 m in range by 5 m in azimuth. The long synthetic aperture times of approximately 90 minutes in duration necessitated a migration from range/Doppler image formation techniques to spotlight mode processing and autofocusing methods. The improved resolution imagery should permit the generation of topographic maps with a factor of two better spatial resolution with about same height accuracy. Coupled the with the recent availability of new lidar topography maps of the lunar surface made by orbiting satellites of Japan and the United States the geodetic control of the radar generated maps products can be improved dramatically. This paper will discuss the hardware and software improvements made to the GSSR and present some of the new high resolution products.
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