인공위성 카메라 주반사경의 위상최적화Topology Optimization of the Primary Mirrir of a Multi-Spectral Camera

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A study on the topology optimization of a multi-spectral camera for space-use is presented. The optimization is carried out under self-weight and polishing pressure loading. A multi-spectral camera for space-use experiences degradation of optical image in the space, which can not be detected on the optical test bench on the earth. An optical surface deformation of a primary mirror, which is a principal component of the camera system, is an important factor affecting the optical performance of the whole camera system. In this study, topology optimization of the primary mirror of the camera is presented. As an objective function, a measure of Strehl ratio is used. Total mass of the primary mirror is given as a constraint to the optimization problem. The sensitivities of the objective function and constraint are calculated by direct differentiation method. Optimization procedure is carried out by an optimality criteria method. For the light-weight primary mirror design, a three dimensional model is treated. As a preliminary example, topology optimization considering a self-weight loading is treated. In the second example, the polishing pressure is also included as a loading in the topology optimization of the mirror. Results of the optimized design topology for the mirror with various mass constraints are presented.
Publisher
대한기계학회
Issue Date
2002-06
Language
Korean
Citation

대한기계학회논문집 A, v.26, no.6, pp.1194 - 1202

ISSN
1226-4873
URI
http://hdl.handle.net/10203/84472
Appears in Collection
ME-Journal Papers(저널논문)
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