GS Zhou
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National Nature Science Foundation of China recently releases the R&D project it wants to initiate during the 14th FYP (five year plan). Among which, a project called "Space assembly dynamics and control of super large aerospace structures" raises an ambitious target for the development of "kilometer-class super large spacecraft".
According to the project guide, the ultra-large spacecraft with the size of the kilometer level is a major strategic aerospace equipment for the future use of space resources. The structural weight and size of the super large spacecraft are huge, which cannot be constructed by a single rocket launch. It needs to be constructed via modular design, multiple launches and space assembly.
Four development targets are thereof raised by the project guide:
1. Lightweight and controllable design of super large aerospace structures.
2. The dynamic evolution of the space assembly process of super large aerospace structures.
3. Orbit-attitude-structure integrated stability control during space assembly.
4. Ground simulation experiment of dynamics and control of space assembly process.
According to the project guide, the ultra-large spacecraft with the size of the kilometer level is a major strategic aerospace equipment for the future use of space resources. The structural weight and size of the super large spacecraft are huge, which cannot be constructed by a single rocket launch. It needs to be constructed via modular design, multiple launches and space assembly.
Four development targets are thereof raised by the project guide:
1. Lightweight and controllable design of super large aerospace structures.
2. The dynamic evolution of the space assembly process of super large aerospace structures.
3. Orbit-attitude-structure integrated stability control during space assembly.
4. Ground simulation experiment of dynamics and control of space assembly process.