Title :
Phase Estimation Based Blind Deconvolution for Turbulence Degraded Images
Author :
Afeng Yang ; Min Lu ; Shuhua Teng ; Jixiang Sun
Author_Institution :
Sch. of Electron. Sci. & Eng., Nat. Univ. of Defense Technol., Changsha, China
Abstract :
The resolution of space object images observed by ground-based telescope is greatly limited due to the influence of atmospheric turbulence. An improved blind deconvolution method is presented to enhance the performance of turbulence degraded images restoration. Firstly, a mixed noise model based blind deconvolution cost function is deduced under Gaussian and Poisson noise contamination of measurement. Then, point spread function (PSF) is described by wavefront phase aberrations in the pupil plane according to Fourier Optics theory. In this way, the estimation of PSF is generated from the wavefront phase parameterization instead of pixel domain value. Lastly, the cost function is converted from constrained optimization problem to non-constrained optimization problem by means of parameterization of object image and PSF. Experimental results show that the proposed method can recover high quality image from turbulence degraded images effectively.
Keywords :
Fourier transform optics; Gaussian noise; atmospheric turbulence; image resolution; image restoration; optimisation; Fourier optics theory; Gaussian noise contamination; PSF; Poisson noise contamination; atmospheric turbulence; constrained optimization problem; ground-based telescope; mixed noise model based blind deconvolution cost function; object image parameterization; phase estimation based blind deconvolution; point spread function; space object image resolution; turbulence degraded images; wavefront phase parameterization; Algorithm design and analysis; Cost function; Deconvolution; Estimation; Image restoration; Noise; Blind deconvolution; Mixed noise model; Point spread function; Turbulence degraded images; Wavefront phase;
Conference_Titel :
Virtual Reality and Visualization (ICVRV), 2013 International Conference on
Conference_Location :
Xi´an
DOI :
10.1109/ICVRV.2013.53