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首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >A Study on Lunar Regolith Quantitative Random Model and Lunar Penetrating Radar Parameter Inversion
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A Study on Lunar Regolith Quantitative Random Model and Lunar Penetrating Radar Parameter Inversion

机译:月球雷格石定量随机模型与探月雷达参数反演研究

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摘要

Lunar penetrating radar (LPR) is an important way to evaluate the geological structure of the subsurface of the moon. The Chang'E-3 has utilized LPR, which is equipped on the lunar rover named Yutu, to obtain the shallow lunar regolith structure in Mare Imbrium. The previous result provides a unique opportunity to map the subsurface structure and vertical distribution of the lunar regolith with high resolution. In order to evaluate the LPR data, the study of lunar regolith media is of great significance for understanding the material composition of the lunar regolith structure. In this letter, we focus on the lunar regolith quantitative random model and parameter inversion with LPR synthetic data. First, based on the Apollo drilling core data, we build the lunar regolith quantitative random model with clipped Gaussian random field theory. It can be used to model the discrete-valued random field with a given correlation structure. Then, we combine radar wave impedance and stochastic inversion methods to carry out LPR data inversion and parameter estimation. The results mostly provide reliable information on the lunar regolith layer structure and local details with high resolution. This letter presents a further research strategy for lunar probe and deep-space detection with LPR.
机译:月球穿透雷达(LPR)是评估月球地下地质结构的重要方法。 '娥三号利用LPR(其安装在名为Yutu的月球漫游车上)获得了母马Imbrium中的浅月re石结构。先前的结果提供了一个独特的机会,可以高分辨率绘制月球下部区域的地下结构和垂直分布。为了评价LPR数据,研究月灰岩介质对于了解月灰岩结构的物质组成具有重要意义。在这封信中,我们重点讨论月球重石定量随机模型和具有LPR综合数据的参数反演。首先,基于阿波罗钻井岩心数据,我们利用裁剪的高斯随机场理论建立了月球长石定量随机模型。它可用于对具有给定相关结构的离散值随机字段建模。然后,结合雷达波阻抗和随机反演方法进行LPR数据反演和参数估计。结果大部分提供了高分辨率的月球巨石层结构和局部细节的可靠信息。这封信提出了使用LPR进行月球探测和深空探测的进一步研究策略。

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