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Lunar Exploration Engineering Development Project

Lunar Exploration Engineering Development Project

(Summary description)Chang’e, also known as Chang’e, is the third satellite in Chang’e’s Chang’e series to orbit the moon. The Chang’e 3 satellite, scheduled for launch in 2013, will achieve three innovations: soft landing, unmanned detection and survival on the night of the moon. The Chang’e III will feature a Lunar Rover to explore the Moon’s surface.

In this project, saisida provides a satisfactory solution for the users’technical difficulty: “Using the Lunar Center coordinate system to generate the lunar surface terrain database”.

Lunar Exploration Engineering Development Project

(Summary description)Chang’e, also known as Chang’e, is the third satellite in Chang’e’s Chang’e series to orbit the moon. The Chang’e 3 satellite, scheduled for launch in 2013, will achieve three innovations: soft landing, unmanned detection and survival on the night of the moon. The Chang’e III will feature a Lunar Rover to explore the Moon’s surface.

In this project, saisida provides a satisfactory solution for the users’technical difficulty: “Using the Lunar Center coordinate system to generate the lunar surface terrain database”.

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Project overview

Chang’e, also known as Chang’e, is the third satellite in Chang’e’s Chang’e series to orbit the moon. The Chang’e 3 satellite, scheduled for launch in 2013, will achieve three innovations: soft landing, unmanned detection and survival on the night of the moon. The Chang’e III will feature a Lunar Rover to explore the Moon’s surface.

In this project, saisida provides a satisfactory solution for the users’technical difficulty: “Using the Lunar Center coordinate system to generate the lunar surface terrain database”.

                                                

  

Lunar Exploration project-visual simulation of Lunar Rover walking on the lunar surface. The following tasks and processes are accomplished through software development:

(1) construction of 3D scene of lunar surface

(2) real-time driving and rendering of active scene of lunar surface

(3)3d sketch of Earth, Moon, Star and vehicle according to the overall design, Task Analysis and system function assignment of the ground application system of the Phase II project, the remote science detection subsystem must have the ability of virtual immersion or non-immersion on the ground (including three-dimensional ring screen projection) to detect and operate the scene. It will provide a virtual simulation (determined by the simulation results) and a real (determined by the measured results) for the other subsystems of the remote science exploration field, and provide a friendly payload remote control field for the personnel concerned.

  

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