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All-reflective optical bifocal zooming system without moving elements based on deformable mirror for space camera application

机译:基于可变形镜的不带移动元件的全反射光学双焦点变焦系统,适用于太空相机应用

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摘要

The space camera with variable focal length is capable of capturing images with variable resolution and variable field of view. This is useful for space-borne reconnaissance because the camera can switch between coarse and fine reconnaissance flexibly. However, the traditional optical zooming relies on moving elements which might influence the momentum balance of the satellite platform. Therefore, we present a prototype design using the piezo deformable mirror (PDM) to realize an all-reflective optical bifocal zooming system. By changing the curvature radius of the PDM, the focal length can be switched between 48 and 192 mm without moving elements involved. With the focal length experiencing 4× magnification, the system performance is still approaching diffraction-limited performance, and the maximum stroke of the PDM is also within its physical limits. Experiments demonstrate that the principle is correct and the design is successful.
机译:具有可变焦距的空间相机能够捕获具有可变分辨率和可变视场的图像。这对于太空侦察很有用,因为摄像机可以灵活地在粗略侦察和精细侦察之间切换。然而,传统的光学变焦依赖于移动元件,这可能会影响卫星平台的动量平衡。因此,我们提出了使用压电可变形镜(PDM)来实现全反射光学双焦点变焦系统的原型设计。通过更改PDM的曲率半径,可以在48到192 mm之间切换焦距而无需移动元件。随着焦距的4倍放大,系统性能仍接近衍射极限性能,PDM的最大行程也在其物理极限之内。实验表明,该原理是正确的,设计成功。

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