Radar Investigations of the Planets

R. Goldstein
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引用次数: 1

Abstract

Planetary radar astronomy's greatest handicap is the extremely feeble power content of an echo. This echo is always masked by relatively strong background noise so that special signal processing is required. The basic task is the detection and measurement of the echo power. However, when the signal strength is greater than the requirements of simple detection, it is desirable to measure the power distribution in time or in frequency. When the signal is still stronger, it is possible to divide the power into the two dimensions of time delay and frequency shift simultaneously, and thus produce a radar "map" of the target. Some of the special techniques and devices which are required to make these measurements, as well as some of the results of applying these techniques to Venus, Mars, Mercury, and Jupiter, are described. There are several groups working in this field and the author has stressed the work at the Jet Propulsion Laboratory merely because of his familiarity with it.
行星的雷达探测
行星雷达天文学的最大障碍是回波的功率极其微弱。这种回声总是被相对较强的背景噪声所掩盖,因此需要进行特殊的信号处理。其基本任务是回波功率的检测和测量。但是,当信号强度大于简单检测的要求时,需要测量功率在时间或频率上的分布。当信号仍然较强时,可以将功率同时划分为时延和频移两个维度,从而产生目标的雷达“地图”。介绍了进行这些测量所需的一些特殊技术和设备,以及将这些技术应用于金星、火星、水星和木星的一些结果。有几个小组在这个领域工作,作者强调喷气推进实验室的工作仅仅是因为他对它很熟悉。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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