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Optical system design of CCD star sensor with large aperture and wide field of view

机译:CCD星传感器光学系统设计,具有大孔径和宽视野

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The star sensor is one of the sensors which are used to determine the spatial attitude of the space vehicle. An optical system of star sensor with large aperture and wide field of view was designed in this paper. The effective focal length of the optics was 16mm, and the F-number is 1.2, the field of view of the optical system is 20°. The working spectrum is 500 to 800 nanometer. The lens system selects a similar complicated Petzval structure and special glass-couple, and get a high imaging quality in the whole spectrum range. For each field-of-view point, the values of the modulation transfer function at 50 cycles/mm is higher than 0.3. On the detecting plane, the encircled energy in a circle of 14μm diameter could be up to 80% of the total energy. In the whole range of the field of view, the dispersion spot diameter in the imaging plane is no larger than 13μm. The full field distortion was less than 0.1%, which was helpful to obtain the accurate location of the reference star through the picture gotten by the star sensor. The lateral chromatic aberration is less than 2μm in the whole spectrum range.
机译:星传感器是用于确定空间车辆的空间姿势的传感器之一。本文设计了具有大孔径和宽视野的星传感器光学系统。光学元件的有效焦距为16mm,并且F数为1.2,光学系统的视野为20°。工作光谱为500至800纳米。镜头系统选择类似的复杂的PetzVal结构和特殊玻璃,并在整个光谱范围内获得高成像质量。对于每个视野点,调制传递函数的值50周期/ mm高于0.3。在检测平面上,14μm直径圆圈的环绕能量占总能量的80%。在视场的整个范围内,成像平面中的分散点直径不大于13μm。完整的场变形小于0.1%,这有助于通过星传感器所获得的图像获得参考明星的精确位置。在整个频谱范围内横向色差小于2μm。

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