Title :
A new algorithm for selecting optimum image on the basis of histogram measuring parameters
Author :
Bhargava, Chitresh ; Singhal, Manav
Author_Institution :
VLSI Design Dept., Poornima Coll. of Eng., Jaipur, India
Abstract :
As we live our life in a very large ocean of visual information and about seventy-five percent of the information acknowledge by a human being is visual; the leftover twenty-five percent involves data processed by all types of human sensory organs. In procedure to improve the quality of images, we may increment the dynamic range of the selected features in the image that is done with the series of actions of image enhancement. Enhancement used as a means for improving the subjective quality of an image, that signify that given a poor quality picture, enhancement should present an output image with improved features so that it becomes likable for viewing. In this paper, we try to establish a simple, and understandable, but highly effective algorithm to address the problem of selecting a better quality image or tell which image enhancement technique is excellent improved the image quality by extracting information of interest to analysis the image. The utilitarian implementation of all exploratory outcome processes utilizing MATLAB code has been compiled on MATLAB R2013a software gizmo.
Keywords :
feature selection; image enhancement; Matlab R2013a software gizmo; Matlab code; data processing; dynamic range; feature selection; histogram measurement parameters; human sensory organs; image analysis; image enhancement; information extraction; optimum image selection; output image; subjective image quality improvement; Entropy; Image resolution; Random access memory; Histogram measuring parameters; energy; entropy; gray level; image enhancement; mean; selection of improved image; skew; standard deviation;
Conference_Titel :
Signal Propagation and Computer Technology (ICSPCT), 2014 International Conference on
Conference_Location :
Ajmer
Print_ISBN :
978-1-4799-3139-2
DOI :
10.1109/ICSPCT.2014.6885015