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Hybrid optimal algorithm-based 2D discrete wavelet transform for image compression using fractional KCA

机译:基于混合最佳算法的2D离散小波变换,用于使用分数KCA的图像压缩

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Due to the low compression performance of traditional compression models, we have developed a new HOA based Fractional KCA with 2D-DWT for improving the multispectral image quality. In this paper, we present a novel multispectral image compression method for improving the complexity by maintaining quality reconstruction and also reducing the size of the storage of multispectral images. Initially, Karhunen-Loeve transform (KLT) is used to remove the spatial redundancies. In the second stage, 2D DWT is used to eliminate the intraband spatial redundancies. In the third stage, Fractional KCA (FKCA) is applied to improve the post-transformation process. FKCA is connected to the band of all wavelet sub-bands to minimize the spatial redundancy between intra sub-bands. Finally, the Hybrid Optimal algorithm (HOA) based FKCA is used to eliminate the residual and information redundancy among the neighboring bands. The experimental analysis of proposed 2D-DWT based Fractional KCA shows that the model improves the performance of compression data in terms of PSNR, MSSI, and VIF. Also, the multispectral image dataset shows the proposed compression model outperforms the existing compression models such as FKLT + PCA, ADWT + OADL, and DWT + DCT
机译:由于传统压缩模型的压缩性能低,我们开发了一种基于新的HOA基本KCA,具有2D-DWT,用于提高多光谱图像质量。在本文中,我们介绍了一种新颖的多光谱图像压缩方法,用于通过维持质量重建并降低多光谱图像存储的尺寸来提高复杂性。最初,Karhunen-Loeve变换(KLT)用于去除空间冗余。在第二阶段,2D DWT用于消除内部空间冗余。在第三阶段,应用分数KCA(FKCA)来改善转换后过程。 FKCA连接到所有小波子带的频带,以最小化帧内频段之间的空间冗余。最后,基于混合最佳算法(HOA)的FKCA用于消除相邻频带中的残差和信息冗余。所提出的2D-DWT基于分数KCA的实验分析表明,该模型提高了PSNR,MSSI和VIF方面的压缩数据的性能。此外,多光谱图像数据集显示所提出的压缩模型优于现有的压缩模型,例如FKLT + PCA,ADWT + OADL和DWT + DCT

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