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Integer Computation of Lossy JPEG2000 Compression

机译:有损JPEG2000压缩的整数计算

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In this paper, an integer-based Cohen–Daubechies–Feauvea (CDF) 9/7 wavelet transform as well as an integer quantization method used in a lossy JPEG2000 compression engine is presented. The conjunction of both an integer transform and quantization step allows for a complete integer computation of lossy JPEG2000 compression. The lossy method of compression utilizes the CDF 9/7 wavelet filter, which transforms integer input pixel values into floating-point wavelet coefficients that are then quantized back into integers and finally compressed by the embedded block coding with optimal truncation tier-1 encoder. Integer computation of JPEG2000 allows a reduction in computational complexity of the wavelet transform as well as ease of implementation in embedded systems for higher computational performance. The results of the integer computation show an equivalent rate/distortion curve to the JasPer JPEG2000 compression engine, as well as a 30% reduction in computation time of the wavelet transform and a 56% reduction in computation time of the quantization processing on an average.
机译:本文提出了一种基于整数的Cohen-Daubechies-Feauvea(CDF)9/7小波变换,以及一种用于有损JPEG2000压缩引擎的整数量化方法。整数变换和量化步骤的结合使得可以对有损JPEG2000压缩进行完整的整数计算。有损压缩方法利用CDF 9/7小波滤波器,该滤波器将整数输入像素值转换为浮点小波系数,然后将其量化回整数,最后通过具有最佳截断层1编码器的嵌入式块编码进行压缩。 JPEG2000的整数计算可降低小波变换的计算复杂度,并易于在嵌入式系统中实现,以实现更高的计算性能。整数计算的结果显示了与JasPer JPEG2000压缩引擎等效的速率/失真曲线,平均而言,小波变换的计算时间减少了30%,量化处理的计算时间减少了56%。

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