To prepare for a Korean lunar orbiter mission, a precise lunar orbit propagator; Yonsei precise lunar orbit propagator (YSPLOP) is developed. In the propagator, accelerations due to the Moon’s non-spherical gravity, the point masses of the Earth, Moon, Sun, Mars, Jupiter and also, solar radiation pressures can be included. The developed propagator’s performance is validated and propagation errors between YSPOLP and STK/Astrogator are found to have about maximum 4-m, in along-track direction during 30 days (Earth’s time) of propagation. Also, it is found that the lifetime of a lunar polar orbiter is strongly affected by the different degrees and orders of the lunar gravity model, by a third body’s gravitational attractions (especially ...
The precise orbit determination of Chang'E-2 is the most important issue for successful mission and ...
International audienceThe Chang'E-5 mission is the third phase of the Chinese Lunar Exploration Prog...
A brief description of targets and problems of the future Japanese project ILOM (In situ Lunar Orien...
The objective of the present study is to hold a preliminary analysis and design of a lunar global sa...
International audienceThe precision of lunar gravity field estimation has improved by means of three...
We examine the influence of the lunar gravity model on the orbit determination (OD) of a lunar orbit...
Various Earth-Moon transfer trajectories are designed and analyzed to prepare the future Korea's Lun...
The Space Exploration Initiative has generated a renewed interest in lunar mission planning. The lun...
Korea is planning a series of lunar space programs in 2020 starting with a lunar orbiter and a lande...
In this research, the ground contact opportunity for the fictitious low lunar orbiter is analyzed to...
The National Aeronautics and Space Administration (NASA) selected Lunar Prospector (LP) as one of th...
Korea’s lunar exploration project includes the launching of an orbiter, a lander (including a rover)...
Lunar laser ranging (LLR) measurements are crucial for advanced exploration of the laws of fundament...
The Lunar Reconnaissance Orbiter (LRO) will be the first mission under NASA’s Vision for Space Explo...
This study briefly describes the targets and problems of the future Japanese project In situ Lunar O...
The precise orbit determination of Chang'E-2 is the most important issue for successful mission and ...
International audienceThe Chang'E-5 mission is the third phase of the Chinese Lunar Exploration Prog...
A brief description of targets and problems of the future Japanese project ILOM (In situ Lunar Orien...
The objective of the present study is to hold a preliminary analysis and design of a lunar global sa...
International audienceThe precision of lunar gravity field estimation has improved by means of three...
We examine the influence of the lunar gravity model on the orbit determination (OD) of a lunar orbit...
Various Earth-Moon transfer trajectories are designed and analyzed to prepare the future Korea's Lun...
The Space Exploration Initiative has generated a renewed interest in lunar mission planning. The lun...
Korea is planning a series of lunar space programs in 2020 starting with a lunar orbiter and a lande...
In this research, the ground contact opportunity for the fictitious low lunar orbiter is analyzed to...
The National Aeronautics and Space Administration (NASA) selected Lunar Prospector (LP) as one of th...
Korea’s lunar exploration project includes the launching of an orbiter, a lander (including a rover)...
Lunar laser ranging (LLR) measurements are crucial for advanced exploration of the laws of fundament...
The Lunar Reconnaissance Orbiter (LRO) will be the first mission under NASA’s Vision for Space Explo...
This study briefly describes the targets and problems of the future Japanese project In situ Lunar O...
The precise orbit determination of Chang'E-2 is the most important issue for successful mission and ...
International audienceThe Chang'E-5 mission is the third phase of the Chinese Lunar Exploration Prog...
A brief description of targets and problems of the future Japanese project ILOM (In situ Lunar Orien...