Combined spatial and frequency domain coding algorithm

Alghannai. M. Rhoma, A. Abobaker, Daw. A. Asdirah
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引用次数: 0

Abstract

Usage of image has been increasing and used in many applications. Image compression plays vital role in saving storage space and saving time while sending images over network. One important point of delivering digital image is time. In this paper we concentrated on the speed of image sending with reasonable quality. The aim of this paper is to reduce image size with reasonable quality. By getting advantage from image transformation in both scope spatial domain and frequency domain. In the case of spatial domain we take the average value (AV) of each four neighbor pixels and put this average value for one of these four neighbor pixels and ignore other three pixels which give us 1:4 compression ratio. In the case of frequency domain, we apply the simplest wavelet transform, the so called Haar wavelet transform (HWT) to reduce the image size with reasonable quality. In order to obtain better performance and overcome the disadvantages of the spatial domain method, we proposed a combined spatial domain and frequency domain (AV-HWT) approach in this paper. Matlab numerical and visualization software was used to perform all of the calculations and generate and display all of the pictures in the simulation. Experimental results prove the effectiveness of proposed algorithm.
空间和频域组合编码算法
图像的使用越来越多,并在许多应用中得到应用。在网络传输图像时,图像压缩对节省存储空间和节省时间起着至关重要的作用。传递数字图像的重要一点是时间。本文主要研究如何在保证图像质量的前提下保证图像的发送速度。本文的目的是在合理的质量下减小图像尺寸。利用图像变换在范围、空间域和频率域的优势。在空间域的情况下,我们取每四个相邻像素的平均值(AV),并将这个平均值放在这四个相邻像素中的一个上,忽略其他三个像素,从而得到1:4的压缩比。在频域的情况下,我们采用最简单的小波变换,即哈尔小波变换(HWT)来减小图像的尺寸,同时保证图像的质量。为了获得更好的性能和克服空间域方法的缺点,本文提出了一种空间域和频域相结合的方法。使用Matlab数值和可视化软件进行所有计算,并生成和显示仿真中的所有图片。实验结果证明了该算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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