Ren Hongxi, Dong Bing
Opt Express. 2020 May 11;28(10):14414-14427. doi: 10.1364/OE.387913.
The original model-based wavefront sensorless adaptive optics (WFSless AO) for extended objects uses the low spatial frequency content of images as the metric function and employs 2N + 1 images to correct N Lukosz aberration modes. We propose an improved method that uses the same metric but requires only N + 2 images to correct N aberration modes. The N + 2 method can achieve comparable corrective accuracy but requiring much smaller number of images compared with the 2N + 1 method. The N + 2 method is not only more efficient, but also provides the flexibility of choosing arbitrary basis modes by involving the non-orthogonality between modes in a linear least-squares optimization process. It is demonstrated that the deformable mirror's influence functions modes (IFM), orthogonal mirror modes (OMM) and fitted Zernike modes (FZM) all can be used as modal basis for the N + 2 method to generate biased images. It is also proved that the N + 2 method is robust to image sampling rate and image noise, showing good prospects of applications in various imaging systems.
最初的基于模型的用于扩展目标的无波前传感器自适应光学系统(WFSless AO)使用图像的低空间频率成分作为度量函数,并采用2N + 1幅图像来校正N种卢科斯像差模式。我们提出了一种改进方法,该方法使用相同的度量,但仅需N + 2幅图像即可校正N种像差模式。与2N + 1方法相比,N + 2方法可以实现相当的校正精度,但所需的图像数量要少得多。N + 2方法不仅效率更高,而且通过在线性最小二乘优化过程中考虑模式之间的非正交性,提供了选择任意基模的灵活性。结果表明,可变形镜的影响函数模式(IFM)、正交镜模式(OMM)和拟合泽尼克模式(FZM)都可以用作N + 2方法的模态基来生成有偏差的图像。还证明了N + 2方法对图像采样率和图像噪声具有鲁棒性,在各种成像系统中显示出良好的应用前景。