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Extended performance comparison of hybrid wavelet transform for image compression with varying proportions of constituent transforms

机译:混合小波变换在不同比例变换下用于图像压缩的扩展性能比较

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摘要

The rapid growth of digital imaging applications have increased the need for effective image compression techniques. Image compression minimizes the size of the image without degrading the quality of the image to an unacceptable level. Image compression in transform domain is one of the most popular techniques. Previous work has proved that the hybrid wavelet transforms (HWT) are better than the respective constituent orthogonal transforms in image compression[1, 2]. Here the extended performance comparison of HWT for image compression is presented with varying the constituent transforms and the proportions of the constituent transforms to test the effect on quality of image compression. The experimentation is done on set of 20 images by varying the constituent transforms, proportion of constituent transforms and compression ratios (CR). The constituent transforms used to generated HWT are Cosine transform, Sine transform, Slant transform, Kekre transform, Walsh transform and Haar transform. Here five proportions of constituent transforms alias 1:16, 1:4, 1:1, 4:1, 16:1 are considered for generation of HWT. Results prove that 4:1, 1:1, 1:4 proportions of constituent transforms in HWT gives better performance as compared to 1:1 proportion of constituent transforms for different compression ratios. Also for 95% compression ratio, 4:1 ratio of DCT-Haarconstituent transforms in HWT gives better results. 1:1 ratio of DCT-Haarconstituent transforms give better results for compression ratios between 70% and 90%. For lower compression ratios, 1:4 proportions of DCT-Haarconstituent transformsin HWT gives better performance.
机译:数字成像应用的快速增长增加了对有效图像压缩技术的需求。图像压缩可将图像大小最小化,而不会降低图像质量到不可接受的水平。变换域中的图像压缩是最流行的技术之一。先前的工作已经证明,混合小波变换(HWT)在图像压缩方面优于各自的正交正交变换[1、2]。在此,通过改变组成变换和组成变换的比例来测试HWT用于图像压缩的扩展性能比较,以测试对图像压缩质量的影响。通过更改组成变换,组成变换的比例和压缩率(CR),对20张图像进行了实验。用于产生HWT的组成变换是余弦变换,正弦变换,倾斜变换,Kekre变换,Walsh变换和Haar变换。在此,考虑将五个比例的组成变换别名1:1:1、1:4、1:1、4:1、16:1用于生成HWT。结果证明,与不同压缩比的1:1比例的构成变换相比,HWT中4:1、1:1、1:4的构成变换具有更好的性能。同样对于95%的压缩率,HWT中DCT-Haar成分转换的4:1比率也能提供更好的结果。对于70%到90%的压缩率,DCT-Haar组成变换的1:1比例可提供更好的结果。对于较低的压缩率,HWT中DCT-Haar成分变换的1:4比例可提供更好的性能。

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