On the application of wavelet transform and Huffman algorithm to Yorùbá language syntax text files compression

Q3 Engineering
K. Amusa, A. Adewusi, T. Erinosho, S. Salawu, David Odufejo
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引用次数: 0

Abstract

Most algorithms of data compression were developed with English language as target text syntax. However, this paper approaches the problem of Yor?b? text files compression via the use of Discrete Wavelet Transform (DWT) and Huffman algorithm. Text files in Yor?b? language syntax are first converted into signal format that are then decomposed using DWT. The decomposed ASCII code representation of the text files are subsequently encoded using Huffman algorithm. Twenty different variants of DWTs taken from four families of wavelet filters (Haar, Daubechies, Symlets and bi-orthogonal) are considered to select the optimal DWT for Yor?b? text files compression. Furthermore, experiments are carried out in the proposed compression scheme with six different Yor?b? text files extracted from the open sources as input data sets. It is found that out of the twenty variants of DWT investigated, sym6 gives the best output for effective Yor?b? text files compression, due to its relatively high compression ratio, high compression factor and lowest compression error. Thus, sym6 as a wavelet transform is suitable for lossy text compression algorithm meant for Yor?b? language syntax text files.
小波变换和霍夫曼算法在Yorùbá语言语法文本文件压缩中的应用
大多数数据压缩算法都是以英语作为目标文本语法来开发的。然而,本文探讨的问题是你的?文本文件压缩通过使用离散小波变换(DWT)和霍夫曼算法。文本文件在你?b?语言语法首先转换成信号格式,然后使用DWT进行分解。分解后的文本文件的ASCII码表示随后使用霍夫曼算法进行编码。考虑了从四个小波滤波器家族(Haar, Daubechies, Symlets和双正交)中提取的20种不同的DWT变体,以选择最优的DWT。文本文件压缩。在此基础上,用6种不同的Yor?b?从开放源代码中提取的文本文件作为输入数据集。我们发现,在研究的20种DWT变体中,sym6给出了有效的Yor?b?的最佳输出。文本文件压缩,由于其相对较高的压缩比,较高的压缩系数和最低的压缩误差。因此,sym6作为小波变换适用于有损文本压缩算法。语言语法文本文件。
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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来源期刊
Serbian Journal of Electrical Engineering
Serbian Journal of Electrical Engineering Energy-Energy Engineering and Power Technology
CiteScore
1.30
自引率
0.00%
发文量
16
审稿时长
25 weeks
期刊介绍: The main aims of the Journal are to publish peer review papers giving results of the fundamental and applied research in the field of electrical engineering. The Journal covers a wide scope of problems in the following scientific fields: Applied and Theoretical Electromagnetics, Instrumentation and Measurement, Power Engineering, Power Systems, Electrical Machines, Electrical Drives, Electronics, Telecommunications, Computer Engineering, Automatic Control and Systems, Mechatronics, Electrical Materials, Information Technologies, Engineering Mathematics, etc.
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