首页> 外文会议>Advances in Adaptive Optics II pt.1 >Laser guide star Shack-Hartmann wavefront sensor modeling: matched filtering, wavefront sensor nonlinearity, and impact of sodium layer variability for the Thirty Meter Telescope
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Laser guide star Shack-Hartmann wavefront sensor modeling: matched filtering, wavefront sensor nonlinearity, and impact of sodium layer variability for the Thirty Meter Telescope

机译:激光制导星Shack-Hartmann波前传感器建模:三十米望远镜的匹配滤波,波前传感器非线性和钠层变异性的影响

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摘要

This paper describes modeling and simulation results for the Thirty Meter Telescope on the degradation of sodium laser guide star Shack-Hartmann wavefront sensor measurement accuracy that will occur due to the spatial structure and temporal variations of the mesospheric sodium layer. Using a contiguous set of LIDAR measurements of the sodium profile, the performance of a standard centroid and of a more refined noise-optimal matched filter spot position estimation algorithm is analyzed and compared for a nominal mean signal level equal to 1000 photo-detected electrons per subaperture per integration time, as a function of subaperture to laser launch telescope distance and CCD pixel read out noise. Both algorithms are compared in terms of their rms spot position estimation error due to noise, their associated wavefront error when implemented on the Thirty Meter Telescope facility adaptive optics system, their linear dynamic range and their bias when detuned from the current sodium profile.
机译:本文介绍了三十米望远镜的建模和仿真结果,该建模结果是由于中层钠层的空间结构和时间变化而导致的钠激光导星Shack-Hartmann波前传感器的测量精度下降。使用连续的一组LIDAR钠分布测量值,分析并比较了标准质心和更精细的噪声-最佳匹配滤波器点位置估计算法的性能,并比较了标称平均信号电平/ 1000个光检测电子/每积分时间产生的子孔径,取决于子孔径对激光发射望远镜距离和CCD像素读出噪声的影响。比较了两种算法的均方根值(由于噪声引起的均方根位置估计误差),在三十米望远镜设施自适应光学系统上实现时的相关波前误差,线性动态范围以及从当前钠曲线失谐时的偏置。

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