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Optimal modal Fourier-transform wavefront control

机译:最优模态傅里叶变换波前控制

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Optimal modal Fourier-transform wavefront control combines the speed of Fourier-transform reconstruction (FTR) with real-time optimization of modal gains to form a fast, adaptive wavefront control scheme. Our modal basis is the real Fourier basis, which allows direct control of specific regions of the point-spread function. We formulate FTR as modal control and show how to measure custom filters. Because the Fourier basis is a tight frame, we can use it on a circular aperture for modal control even though it is not an orthonormal basis. The modal coefficients are available during reconstruction, greatly reducing computational overhead for gain optimization. Simulation results show significant improvements in performance in low-signal-to-noise-ratio situations compared with nonadaptive control. This scheme is computationally efficient enough to be implemented with off-the-shelf technology for a 2.5 kHz, 64 x 64 adaptive optics system. (C) 2005 Optical Society of America.
机译:最优模态傅里叶变换波前控制将傅里叶变换重建(FTR)的速度与模态增益的实时优化相结合,以形成快速,自适应的波前控制方案。我们的模态基础是真正的傅立叶基础,它可以直接控制点扩展函数的特定区域。我们将FTR公式化为模态控制,并展示如何测量自定义滤波器。由于傅立叶基础是紧框架,因此即使不是正交基础,我们也可以在圆形孔径上使用它进行模态控制。模态系数在重建期间可用,从而大大减少了增益优化的计算开销。仿真结果表明,与非自适应控制相比,在低信号噪声比情况下的性能有了显着改善。该方案的计算效率足以在2.5 kHz,64 x 64自适应光学系统中使用现成技术实现。 (C)2005年美国眼镜学会。

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