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Alignment for active secondary mirror of space telescope using model- based wavefront sensorless adaptive optics

机译:使用基于模型的波前无传感器自适应光学器件对望远镜有源二手镜的对准

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The precise alignment of the space telescope with an active secondary mirror (ASM) is a key factor to ensure the imaging quality. The traditional alignment methods, like sensitivity table method and SPGD, are not suitable for on-orbit instant alignment of space telescope. In this paper, a model-based wavefront sensorless adaptive optics (WSLAO) method is proposed for the alignment of ASM of space telescope. This method does not require an additional wavefront sensor (like Shack-Hartmann) or a lot of iterations (like phase retrieval). The low spatial frequency content of images is used as the metric function. The misalignment errors can be estimated from the quadratic relationship between the metric function and the coefficients of gradient orthogonal modes (GOM). Here GOM is derived from the response functions of five degrees of freedom of the ASM. A three-mirror anastigmatic telescope with an ASM is modeled for the performance tests. Simulation results show high corrective accuracy and rapid convergence of our method. The RMS of the residual aberration can be reduced to less than 0.02 rad after three correction cycles.
机译:空间望远镜与有源二射镜(ASM)的精确对准是确保成像质量的关键因素。传统的对准方法,如灵敏度表方法和SPGD,不适合空间望远镜的轨道瞬间对齐。本文提出了一种基于模型的波前无传感器自适应光学(WSLAO)方法,用于对空间望远镜ASM的对准。该方法不需要额外的波前传感器(如Shack-Hartmann)或大量迭代(如相位检索)。图像的低空间频率内容用作度量函数。可以从度量函数与梯度正交模式(GOM)之间的二次关系估计未对准错误。这里GOM来自ASM的五个自由度的响应函数。具有ASM的三镜子砧座望远镜被建模用于性能测试。仿真结果显示了我们方法的高矫正精度和快速融合。在三个校正循环之后,残留像差的RM可以降低至小于0.02 rad。

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