Structural analysis of lunar regolith not only provides important information about lunar geology but also provides a reference for future lunar sample return missions. The Lunar Penetrating Radar (LPR) onboard China’s Chang’E-3 (CE-3) provides a unique opportunity for mapping the subsurface structure and the near-surface stratigraphic structure of the regolith. The problem of rock positioning and regolith-basement interface highlighting is meaningful. In this paper, we propose an adaptive rock extraction method based on local similarity constraints to achieve the rock location and quantitative analysis for regolith. Firstly, a processing pipeline is designed to image the LPR CH-2 A and B data. Secondly, we adopt an f-x EMD (emp...
As one of the important scientific instruments of lunar exploration, the Lunar Penetrating Radar (LP...
Aims. We examine data obtained by the Lunar Penetrating Radar (LPR) onboard the Chang'E-4 (CE-4) mis...
Aims. We examine data obtained by the Lunar Penetrating Radar (LPR) onboard the Chang'E-4 (CE-4) mis...
This work analyzes the observations from the Lunar Regolith Penetrating Radar (LRPR) onboard Chang’E...
Parameter estimation of the lunar regolith not only provides important information about the composi...
The Chinese Chang’E-5 probe landed in the Mons Rümker of Oceanus Procellarum on the near side of the...
On 1 December 2020, China’s Chang’E-5 (CE-5) probe successfully landed in the northeastern Oceanus P...
These datasets include the 2B level data of the lunar penetrating radar onboard the Chinese Chang'E-...
Context. In 2019, China’s Chang’E-4 (CE-4) probe landed on the far side of the Moon: a first in luna...
Most previous studies tend to simplify the lunar regolith as a homogeneous medium. However, the luna...
Context. In 2019, China’s Chang’E-4 (CE-4) probe landed on the far side of the Moon: a first in luna...
Context. In 2019, China’s Chang’E-4 (CE-4) probe landed on the far side of the Moon: a first in luna...
Accurate relative permittivity is essential to the further analysis of lunar regolith. The tradition...
Context. The lunar penetrating radar (LPR) carried by the Yutu-2 rover performed the first in situ m...
Context. The lunar penetrating radar (LPR) carried by the Yutu-2 rover performed the first in situ m...
As one of the important scientific instruments of lunar exploration, the Lunar Penetrating Radar (LP...
Aims. We examine data obtained by the Lunar Penetrating Radar (LPR) onboard the Chang'E-4 (CE-4) mis...
Aims. We examine data obtained by the Lunar Penetrating Radar (LPR) onboard the Chang'E-4 (CE-4) mis...
This work analyzes the observations from the Lunar Regolith Penetrating Radar (LRPR) onboard Chang’E...
Parameter estimation of the lunar regolith not only provides important information about the composi...
The Chinese Chang’E-5 probe landed in the Mons Rümker of Oceanus Procellarum on the near side of the...
On 1 December 2020, China’s Chang’E-5 (CE-5) probe successfully landed in the northeastern Oceanus P...
These datasets include the 2B level data of the lunar penetrating radar onboard the Chinese Chang'E-...
Context. In 2019, China’s Chang’E-4 (CE-4) probe landed on the far side of the Moon: a first in luna...
Most previous studies tend to simplify the lunar regolith as a homogeneous medium. However, the luna...
Context. In 2019, China’s Chang’E-4 (CE-4) probe landed on the far side of the Moon: a first in luna...
Context. In 2019, China’s Chang’E-4 (CE-4) probe landed on the far side of the Moon: a first in luna...
Accurate relative permittivity is essential to the further analysis of lunar regolith. The tradition...
Context. The lunar penetrating radar (LPR) carried by the Yutu-2 rover performed the first in situ m...
Context. The lunar penetrating radar (LPR) carried by the Yutu-2 rover performed the first in situ m...
As one of the important scientific instruments of lunar exploration, the Lunar Penetrating Radar (LP...
Aims. We examine data obtained by the Lunar Penetrating Radar (LPR) onboard the Chang'E-4 (CE-4) mis...
Aims. We examine data obtained by the Lunar Penetrating Radar (LPR) onboard the Chang'E-4 (CE-4) mis...