Abstract
Satellite panel is an important part of satellite, and its modeling
accuracy and reliability are very important for satellite design and
manufacturing. However, how to improve the accuracy and reliability of
satellite panel modeling has become a key issue to be solved urgently in
the field of satellite technology. In this research, based on the
sandwich sandwich theory, a new finite element model for satellite
panels is constructed, which can numerically express the multi-layer
structure, material properties and their interactions of satellite
panels, and more accurately predict and simulate the behavior of
satellite panels under various conditions. In the process of model
building, Lanczos method is used to analyze the modal of the satellite
solar panel model, and the frequency coincidence analysis between the
analysis results and the real mode is carried out. The results show that
the frequency error of the first five modes is less than 5%, which
indicates that the established finite element model of satellite solar
panel has high accuracy. It can well capture the modal characteristics
of satellite solar panel in the vibration process. Using Modal
confidence and MAC (Modal Assurance Criteria) to assess, conform to the
degree of its MAC value is above 0.9, conform to the Modal correlation
standard. To sum up, the satellite panels finite element modeling method
is appropriate, has the high accuracy and reliability, can better meet
the needs of design and manufacture of satellite, promote the
sustainable development of satellite technology and progress