arrow
Return

Jitter-Robust Phase Retrieval Wavefront Sensing Algorithms

delete2022-07-26
delete4
delete
OA
AI
L
Liang Guo
鞠国浩 cover
鞠国浩 (Guohao Ju) *
B
Boqian Xu
X
Xiaoquan Bai
Q
Qingyu Meng
F
Fengyi Jiang
S
Shuyan Xu
DOI:10.3390/s22155584delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Phase retrieval wavefront sensing methods are now of importance for imaging quality maintenance of space telescopes. However, their accuracy is susceptible to line-of-sight jitter due to the micro-vibration of the platform, which changes the intensity distribution of the image. The effect of the jitter shows some stochastic properties and it is hard to present an analytic solution to this problem. This paper establishes a framework for jitter-robust image-based wavefront sensing algorithm, which utilizes two-dimensional Gaussian convolution to describe the effect of jitter on an image. On this basis, two classes of jitter-robust phase retrieval algorithms are proposed, which can be categorized into iterative-transform algorithms and parametric algorithms, respectively. Further discussions are presented for the cases where the magnitude of jitter is unknown to us. Detailed simulations and a real experiment are performed to demonstrate the effectiveness and practicality of the proposed approaches. This work improves the accuracy and practicality of the phase retrieval wavefront sensing methods in the space condition with non-ignorable micro-vibration.
Keywords:
jitter-robust
parametric phase retrieval
iterative-transform wavefront sensing
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Sensors cover
Sensors
IF:
3.5
Papers:
7.2W
Citations:
20.9W

Organization

C
chinese academy of sciences
Scholars:
56.7W
Papers: 45.0W
Citations: 704
Cited Papers

Cited Papers

Pyogene Spondylodiszitis der Brust- und Lendenwirbelsäule
err2011-04-01
err0
PREAI
errM. Akbar; B. Lehner; S. Doustdar; C.H. Fürstenberg; S. Hemmer; T. Bruckner; C. Carstens; B. Wiedenhöfer
errShare
errSave
Agronomic Practices, Genetic Diversity and Population Structure of <em>Moringa oleifera</em> (Lam.) in Nigeria
err
IF0
err2019-10-18
err0
errOAAI
errJacob Popoola; David Igwe; Opeyemi Jegede; Victoria Iwu; Adegoke Adegbite; Conrad Omonhinmin
errShare
errSave
Inferior clinical outcomes after femur fracture in the obese are potentially preventable
err2019-11-01
err0
PREAI
errMary K. Bryant; Matthew Parrish; Sara Roy; Pascal Udekwu; Megan Farrell; Miren Schinco; Sarat Ganga
errShare
errSave
Sub-Millisecond Phase Retrieval for Phase-Diversity Wavefront Sensor
errSENSORS
IF3.5
err2020-08-28
err38
errOAAI
errWu, Yu; Guo, Youming; Bao, Hua; Rao, Changhui
errShare
errSave
Feature-based phase retrieval wavefront sensing approach using machine learning
err2018-11-16
err59
errOAAI
errJu, Guohao; Qi, Xin; Ma, Hongcai; Yan, Changxiang
errShare
errSave
Large segmented sparse aperture collimation by curvature sensing
err2020-12-18
err9
errOAAI
errAn, Qichang; Wu, Xiaoxia; Lin, Xudong; Ming, Ming; Wang, Jianli; Chen, Tao; Zhang, Jingxu; Li, Hongwen; Chen, Lu; Tang, Jing; Wang, Rui; Zhao, Hongchao
errShare
errSave
DNN-based aberration correction in a wavefront sensorless adaptive optics system
err2019-04-03
err84
errOAAI
errTian, Qinghua; Lu, Chenda; Liu, Bo; Zhu, Lei; Pan, Xiaolong; Zhang, Qi; Yang, Leijing; Tian, Feng; Xin, Xiangjun
errShare
errSave
researcher View more