4.7 Article

Rock Location and Property Analysis of Lunar Regolith at Chang'E-4 Landing Site Based on Local Correlation and Semblance Analysis

期刊

REMOTE SENSING
卷 13, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/rs13010048

关键词

lunar penetrating radar; local correlation; semblance analysis; rock location; property analysis; regolith

资金

  1. National Key R&D Program of China [2020YFE0202100]
  2. National Natural Science Foundation of China [11941001, 41941002]
  3. pre-research project on Civil Aerospace Technologies - Chinese National Space Administration (CNSA) [D020201, D020203, D020101, D020102]
  4. Beijing Municipal Science and Technology Commission [Z191100004319001, Z181100002918003]
  5. Strategic Priority Research Program of Chinese Academy of Sciences [XDB 41000000]

向作者/读者索取更多资源

The paper introduces a procedure that combines rock extraction technique and common offset semblance analysis for interpreting CE-4 LPR data, capable of obtaining high-precision detection results of rock positions and properties.
The Lunar Penetrating Radar (LPR) onboard the Yutu-2 rover from China's Chang'E-4 (CE-4) mission is used to probe the subsurface structure and the near-surface stratigraphic structure of the lunar regolith on the farside of the Moon. Structural analysis of regolith could provide abundant information on the formation and evolution of the Moon, in which the rock location and property analysis are the key procedures during the interpretation of LPR data. The subsurface velocity of electromagnetic waves is a vital parameter for stratigraphic division, rock location estimates, and calculating the rock properties in the interpretation of LPR data. In this paper, we propose a procedure that combines the regolith rock extraction technique based on local correlation between the two sets of LPR high-frequency channel data and the common offset semblance analysis to determine the velocity from LPR diffraction hyperbola. We consider the heterogeneity of the regolith and derive the relative permittivity distribution based on the rock extraction and semblance analysis. The numerical simulation results show that the procedure is able to obtain the high-precision position and properties of the rock. Furthermore, we apply this procedure to CE-4 LPR data and obtain preferable estimations of the rock locations and the properties of the lunar subsurface regolith.

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