DocumentCode
714318
Title
A novel approach for image compression based on multi-level image thresholding using discrete wavelet transform and cricket algorithm
Author
Canayaz, Murat ; Karci, Ali
Author_Institution
Bilgisayar Bilimleri Arastirma ve Uygulama Merkezi, Yuzuncu Yil Univ., Van, Turkey
fYear
2015
fDate
16-19 May 2015
Firstpage
224
Lastpage
227
Abstract
Applications of image compression is important in terms of time and resource management considering factors such as require more time to send according to the size of image over the network and large amount of space is high dimensional data for storing images. In this study, a new approach can be using at image compression process will be introduced. Firstly, image subjected to discrete wavelet transform for extracting feature. Then multi-level threshold values will be find with Shanon entropy in the obtained image. The maximum value of objective function will be obtained with the help of cricket algorithm at the threshold values finding step. This algorithm is a meta-heuristic algorithm that based on population. The threshold values that obtained through algorithm using to compressing the images will be provided. At the end of the study, the image compression ratio, the proposed approach running on a standard test image will be given.
Keywords
data compression; discrete wavelet transforms; entropy; feature extraction; image coding; Shanon entropy; cricket algorithm; discrete wavelet transform; feature extraction; image compression process; image compression ratio; metaheuristic algorithm; multilevel image thresholding; multilevel threshold value; objective function; resource management; time management; Discrete wavelet transforms; Entropy; Feature extraction; Image coding; PSNR; Signal processing algorithms; cricket algorithm; discrete wavelet transform; image compression; multi-level entropy;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing and Communications Applications Conference (SIU), 2015 23th
Conference_Location
Malatya
Type
conf
DOI
10.1109/SIU.2015.7129799
Filename
7129799
Link To Document