To improve the lunar DEM accuracy derived from CE-1 altimeter data, CE-1 laser altimeter data are calibrated in this paper. Orbit accuracy and ranging accuracy are the two most important factors to affect the application of altimeter data in the lunar topography. An empirical method is proposed to calibrate CE-1 altimeter data, using gridded LOLA DEM to correct systematic errors of CE-1 altimeter data, and the systematic bias is about -139.52 m. A new lunar DEM grid model based on calibrated CE-1 altimeter data with the spatial resolution of 0.0625° × 0.0625° is obtained as well as a spherical harmonic model at 1400th order. Furthermore, the DEM accuracy is assessed through the comparison with the nearside landmarks of the Moon, and the re...
Initial work in creating a complete Lunar DEM and orthoimage from Level 3 Chang’E1 imagery is presen...
A kinematic statistical method is proposed to determine the position for Chang'E-3 (CE-3) lunar ...
2nd International Postgraduate Conference on Infrastructure and Environment, IPCIE 2010, Hong Kong, ...
International audienceMons Rümker is the primary candidate region for the lunar landing mission of C...
More than 3 million range measurements from the Chang'E-1 Laser Altimeter have been used to prod...
Mons Rümker is the primary candidate region for the lunar landing mission of Chang’E-5. W...
Mons Rümker is the primary candidate region for the lunar landing mission of Chang’E-5. W...
We present an improved lunar digital elevation model (DEM) covering latitudes within ±60°, at a hori...
We present an improved lunar digital elevation model (DEM) covering latitudes within +/-60 deg, at a...
As of June 19, 2010, the Lunar Orbiter Laser Altimeter, an instrument on the Lunar Reconnaissance Or...
This paper presents a preliminary result of crossover analysis and adjustment of Chang'E-1(CE-1) Las...
The illumination condition of the lunar polar regions can be used to analyze the choice of ideal lan...
AbstractWe present an improved lunar digital elevation model (DEM) covering latitudes within ±60°, a...
One of the oqtical datasets for optimal selection of future lunar lana_ng sites is local, to regiona...
an instrument on the Lunar Reconnaissance Orbiter, has collected over 2.0 × 109 measurements of elev...
Initial work in creating a complete Lunar DEM and orthoimage from Level 3 Chang’E1 imagery is presen...
A kinematic statistical method is proposed to determine the position for Chang'E-3 (CE-3) lunar ...
2nd International Postgraduate Conference on Infrastructure and Environment, IPCIE 2010, Hong Kong, ...
International audienceMons Rümker is the primary candidate region for the lunar landing mission of C...
More than 3 million range measurements from the Chang'E-1 Laser Altimeter have been used to prod...
Mons Rümker is the primary candidate region for the lunar landing mission of Chang’E-5. W...
Mons Rümker is the primary candidate region for the lunar landing mission of Chang’E-5. W...
We present an improved lunar digital elevation model (DEM) covering latitudes within ±60°, at a hori...
We present an improved lunar digital elevation model (DEM) covering latitudes within +/-60 deg, at a...
As of June 19, 2010, the Lunar Orbiter Laser Altimeter, an instrument on the Lunar Reconnaissance Or...
This paper presents a preliminary result of crossover analysis and adjustment of Chang'E-1(CE-1) Las...
The illumination condition of the lunar polar regions can be used to analyze the choice of ideal lan...
AbstractWe present an improved lunar digital elevation model (DEM) covering latitudes within ±60°, a...
One of the oqtical datasets for optimal selection of future lunar lana_ng sites is local, to regiona...
an instrument on the Lunar Reconnaissance Orbiter, has collected over 2.0 × 109 measurements of elev...
Initial work in creating a complete Lunar DEM and orthoimage from Level 3 Chang’E1 imagery is presen...
A kinematic statistical method is proposed to determine the position for Chang'E-3 (CE-3) lunar ...
2nd International Postgraduate Conference on Infrastructure and Environment, IPCIE 2010, Hong Kong, ...