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A Computationally Efficient Wavefront Reconstructor for Simulations of Multi-Conjugate Adaptive Optics on Giant Telescopes

机译:巨型望远镜多共轭自适应光学仿真的计算上有效的波前重建

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Multi-conjugate adaptive optical (MCAO) systems with from 10~4 to 10~5 degrees of freedom have been proposed for future giant telescopes. Using standard matrix methods to compute, optimize, and implement wavefront reconstruction algorithms for these systems is impractical, since the number of calculations required to compute (apply) the reconstruction matrix scales as the cube (square) of the number of AO degrees of freedom. Significant improvements in computational efficiency are possible by exploiting the sparse and/or periodic structure of the deformable mirror influence matrices and the atmospheric turbulence covariance matrices appearing in these calculations. In this paper, we review recent progress in developing an iterative sparse matrix implementation of minimum variance wavefront reconstruction for MCAO. The basic method is preconditioned conjugate gradients, using a multigrid preconditioner incorporating a layer-oriented, iterative smoothing operator. We outline the key elements of this approach, including special considerations for laser guide star (LGS) MCAO systems with tilt-removed LGS wavefront measurements and auxiliary full aperture tip/tilt measurements from natural guide stars. Performance predictions for sample natural guide star (NGS) and LGS MCAO systems on 8 and 16 meter class telescopes are also presented.
机译:多共轭自适应光学(MCAO)系统从10〜4〜10〜5个自由度已经提出了用于未来巨型望远镜。使用标准矩阵方法来计算,优化和执行波前的重建算法对这些系统是不实际的,因为需要的计算的计算次数(申请)的重建矩阵尺度为立方体(正方形)AO自由度的数量。在计算效率显著改进通过利用稀疏和/或可变形反射镜的影响矩阵的周期性结构和出现在这些计算大气湍流的协方差矩阵是可能的。在本文中,我们回顾了在发展中最小方差波前重建MCAO的迭代稀疏矩阵实施的最新进展。的基本方法是预条件共轭梯度,使用结合有取向层,迭代平滑操作者一个多网格预。我们概述了这种方法的关键要素,包括用于激光导星特殊的考虑与倾斜移除的LGS(LGS)MCAO系统波前从天然导航星测量和辅助全孔径尖/倾斜测量。样品自然导星(NGS)并在第8和16米级望远镜LGS MCAO系统的性能预测,还提出。

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