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Method for computer-aided alignment of complex optical system

机译:复杂光学系统的计算机辅助对准方法

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For making complex optical system meet the design requirement, such as the space camera used in remote sensing and UVX lithophotography, especially for off-axis all-reflecting optical system, alignment technology is so necessary. In this paper, a method is presented. Based on the ideas of linearity instead of non-linearity and difference quotient instead of differential quotient, a mathematical model for computer-aided alignment is proposed. This model included the characteristics of the optical system, wavefront difference of its exit pupil and its misalignment of the misaligned optical system. Then comparing self-compiled software with alignment package of CODE V, as a result, this self-compiled software is much more valid than alignment package of CODE V. For a large aperture, long focal length and off-axis three-mirror optical system, computer-aided alignment is successful. Finally, the wavefront error of the middle field is 0.094 waves RMS and the wavefront error of +0.7 field is 0.106 waves RMS and the wavefront error of -0.7 field is 0.125 waves RMS at λ=632.8nm are obtained.
机译:为了使复杂的光学系统满足设计要求,例如用于遥感和UVX型型锂电图中使用的空间相机,特别是对于轴外反射光学系统,对准技术是必要的。在本文中,提出了一种方法。基于线性度而不是非线性和差分商而不是差分商的思想,提出了一种用于计算机辅助对准的数学模型。该模型包括光学系统的特征,其出口瞳孔的波前差异及其未对准光学系统的未对准。然后将自编译软件与代码v的对准包进行比较,因此,这种自编译软件比代码V的对准包更有效。对于大孔径,长焦距和轴外镜三镜光学系统,计算机辅调对齐成功。最后,中间字段的波前误差是0.094波rms,+0.7字段的波前误差是0.106波,而-0.7字段的波前误差是λ= 632.8nm的0.125波。

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