An h‑β Composite Optimization Method for the Side Support of the Primary Mirror of Astronomical Optical Telescope
A telescope and optimization method technology, applied in the field of H-β composite optimization method, can solve the problems of poor calculation method accuracy, slow speed, not the global optimal value, etc., and achieve the effect of improving accuracy
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[0080] Taking the side support of the primary mirror of the 2.5-meter wide-field survey telescope (WFST) as an example, the objective function, the setting of design variables and state variables
[0081] Such as figure 1 As shown, the wavelength range of WFST observation is from 320nm to 1000nm, so the root mean square minimum half-optical path error of shaft support design under gravity load cannot exceed 10nm. The primary mirror is crescent-shaped, the upper surface and the lower surface are paraboloids with focal length f=2.13, the thickness of the primary mirror is h=120.00mm, and the inner diameter is φ 1 =1000.00mm, outer diameter φ 2 =2500.00mm.
[0082] Such as figure 2 As shown, the lateral support design of the WFST primary mirror, when the mirror surface is vertical, the outer diameter r of the primary mirror 2 Select about XZ plane and YZ plane symmetry N point (taking N=6 as example) at height H (distance from primary mirror bottom paraboloid vertex) place o...
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