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首页> 外文期刊>International Journal of Optics >Performance Comparison of Wavefront-Sensorless Adaptive Optics Systems by Using of the Focal Plane
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Performance Comparison of Wavefront-Sensorless Adaptive Optics Systems by Using of the Focal Plane

机译:利用焦平面的无波前传感器自适应光学系统性能比较

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The correction capability and the convergence speed of the wavefront-sensorless adaptive optics (AO) system are compared based on two different system control algorithms, which both use the information of focal plane. The first algorithm is designed through the linear relationship between the second moment of the aberration gradients and the masked far-field intensity distribution and the second is stochastic parallel gradient descent (SPGD), which is the most commonly used algorithm in wavefront-sensorless AO systems. A wavefront-sensorless AO model is established with a 61-element deformable mirror (DM) and a CCD. Performance of the two control algorithms is investigated and compared through correcting different wavefront aberrations. Results show that the correction ability of AO system based on the proposed control algorithm is obviously better than that of AO system based on SPGD algorithm when the wavefront aberrations increase. The time needed by the proposed control algorithm is much less than that of SPGD when the AO system achieves similar correction results. Additionally, the convergence speed of the proposed control algorithm is independent of the turbulence strength while the number of intensity measurements needed by SPGD increases as the turbulence strength magnifies.
机译:基于两种不同的系统控制算法,分别利用焦平面信息,比较了无波阵面自适应光学系统的校正能力和收敛速度。第一种算法是通过像差梯度的第二个矩与被掩盖的远场强度分布之间的线性关系设计的,第二种是随机平行梯度下降(SPGD),这是无波前无传感器AO系统中最常用的算法。利用61要素可变形镜(DM)和CCD建立了无波前传感器AO模型。通过校正不同的波前像差,研究并比较了两种控制算法的性能。结果表明,当波前像差增大时,基于该控制算法的AO系统的校正能力明显优于基于SPGD算法的AO系统。当AO系统获得相似的校正结果时,所提出的控制算法所需的时间比SPGD所需的时间少得多。另外,所提出的控制算法的收敛速度与湍流强度无关,而SPGD所需的强度测量次数随着湍流强度的增加而增加。

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