雷达遥感应用中冰雪体积的走时计算

Andreas Benedikter;Christian Huber;Letizia Gambacorta;Marc Rodriguez-Cassola;Gerhard Krieger
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引用次数: 0

摘要

当雷达信号穿透冰雪时,由于比空气的折射率更高,它们会经历额外的延迟和方向变化。在处理、模拟或对雷达数据进行地理编码时,应准确地考虑到这些传播效应。当折射率恒定时,行时计算很简单,但在非均匀介质中,行时计算就变得很困难。本文介绍了一种基于Eikonal方程和费马原理的新方法,可以有效地计算非均匀冰雪体积中雷达信号的传播时间。这些方法可以适应几乎任意的折射率分布,确保在雷达遥感应用中精确处理传播效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Travel Time Computation in Snow and Ice Volumes for Radar Remote Sensing Applications
When radar signals penetrate snow and ice, they experience additional delays and directional changes due to the higher refractive index compared to that of air. These propagation effects should be taken into account accurately when processing, simulating, or geocoding radar data. Travel time computation is straightforward when the refractive index is constant, but it becomes challenging in heterogeneous media. This letter introduces novel methods based on the Eikonal equation and Fermat’s principle for efficiently computing radar signal travel times in heterogeneous snow and ice volumes. These approaches can accommodate nearly arbitrary refractive index distributions, ensuring precise handling of propagation effects in radar remote sensing applications.
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