TY - JOUR
T1 - 数字全息重构图像边缘误差抑制方法研究
AU - Wei, Shuyu
AU - Chen, Xin
AU - Wen, Yongfu
AU - Cheng, Haobo
N1 - Publisher Copyright:
© 2021, Science Press. All right reserved.
PY - 2021/3
Y1 - 2021/3
N2 - Due to its high sensitivity, high accuracy, strong resolving power, convenient and flexible reproduction, storage and transmission, digital holography technology has been widely used in the measurement of micro-nano structures and biological cells. However, the recording of digital holograms is affected by factors such as limited apertures, and the reconstructed image will produce some edge errors that resemble ripples, resulting in the degradation of image quality and insufficient utilization of CCD field of view. Based on the digital holographic theory, this paper firstly analyzes the causes of errors, and discusses in detail the numerical parameters that affect edge errors. On this basis, a period continuation iterative method is proposed to preprocess the hologram and use the mean square difference of images to evaluate the iteration results. Through computer simulation and experiments, the results show that this method can significantly reduce edge errors and improve the quality of the reproduced image.
AB - Due to its high sensitivity, high accuracy, strong resolving power, convenient and flexible reproduction, storage and transmission, digital holography technology has been widely used in the measurement of micro-nano structures and biological cells. However, the recording of digital holograms is affected by factors such as limited apertures, and the reconstructed image will produce some edge errors that resemble ripples, resulting in the degradation of image quality and insufficient utilization of CCD field of view. Based on the digital holographic theory, this paper firstly analyzes the causes of errors, and discusses in detail the numerical parameters that affect edge errors. On this basis, a period continuation iterative method is proposed to preprocess the hologram and use the mean square difference of images to evaluate the iteration results. Through computer simulation and experiments, the results show that this method can significantly reduce edge errors and improve the quality of the reproduced image.
KW - Digital holography
KW - Edge error
KW - Period extension
UR - http://www.scopus.com/pages/publications/85103189116
U2 - 10.7517/issn.1674-0475.200910
DO - 10.7517/issn.1674-0475.200910
M3 - 文章
AN - SCOPUS:85103189116
SN - 1674-0475
VL - 39
SP - 166
EP - 173
JO - Yingxiang Kexue yu Guanghuaxue/Imaging Science and Photochemistry
JF - Yingxiang Kexue yu Guanghuaxue/Imaging Science and Photochemistry
IS - 2
ER -