Ofer Hadar

Senior Academic

Restoration of images degraded by extreme mechanical vibrations

O. Hadar, Z. Adar, A. Cotter, N. S. Kopeika

A method of numerically calculating the optical transfer function appropriate to any type of image motion and vibration, including random, has been recently developed. This method has been verified experimentally with real vibrations, and the close agreement justifies implementation in image restoration from blur deriving from any type of image motion, including random displacement. Here, image restorations of actual physically degraded images are presented, based on a constrained least squares improvement of the original Wiener filter. Even for extreme vibrations where the blur extent is much larger than the blurred detail, restoration is quite complete. The key to restoration is the determination of the optical transfer function unique to the particular image motion and vibration causing the blur. Results are also presented for low vibration frequency motion of random blur extent, as well as for high vibration frequencies.

Publication language English
Pages 171-177
Journal Optics and Laser Technology
Volume 29
Issue number 4
Publication status Published - 01.01.1997

Keywords

Image restoration optomechanics
Motion
Optical transfer function
Vibrations

ASJC Scopus subject areas

Electronic, Optical and Magnetic Materials
Atomic and Molecular Physics, and Optics
Electrical and Electronic Engineering