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An enhanced one-dimensional SPIHT algorithm and its implementation for TV systems

机译:一种增强的一维SPIHT算法及其在电视系统中的实现

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摘要

In general, to achieve high compression efficiency, a 2D image or a 2D block is used as the compression unit. However, 2D compression requires a large memory size and long latency when input data are received in a raster scan order that is common in existing TV systems. To address this problem, a 1D compression algorithm that uses a 1D block as the compression unit is proposed. 1D set partitioning in hierarchical trees (SPIHT) is an effective compression algorithm that fits the encoded bit length to the target bit length precisely. However, the 1D SPIHT can have low compression efficiency because 1D discrete wavelet transform (DWT) cannot make use of the redundancy in the vertical direction. This paper proposes two schemes for improving compression efficiency in the 1D SPIHT. First, a hybrid coding scheme that uses different coding algorithms for the low and high frequency bands is proposed. For the low-pass band, a differential pulse code modulation-variable length coding (DPCM-VLC) is adopted, whereas a 1D SPIHT is used for the high-pass band. Second, a scheme that determines the target bit length of each block by using spatial correlation with a minimal increase in complexity is proposed. Experimental results show that the proposed algorithm improves the average peak signal to noise ratio (PSNR) by 2.97 dB compared with the conventional 1D SPIHT algorithm. With the hardware implementation, the throughputs of both encoder and decoder designs are 6.15 Gbps, and gate counts of encoder and decoder designs are 42.8 K and 57.7 K, respectively.
机译:通常,为了实现高压缩效率,将2D图像或2D块用作压缩单元。但是,当以现有电视系统中常见的光栅扫描顺序接收输入数据时,二维压缩需要较大的内存大小和较长的等待时间。为了解决这个问题,提出了一种使用1D块作为压缩单元的1D压缩算法。层次树中的一维集合分区(SPIHT)是一种有效的压缩算法,可将编码后的比特长度精确地调整为目标比特长度。但是,一维SPIHT可能具有较低的压缩效率,因为一维离散小波变换(DWT)无法利用垂直方向的冗余。本文提出了两种提高一维SPIHT压缩效率的方案。首先,提出了针对低频带和高频带使用不同编码算法的混合编码方案。对于低通频带,采用差分脉冲编码调制-可变长度编码(DPCM-VLC),而一维SPIHT用于高通频带。其次,提出了一种方案,该方案通过使用空间相关性以最小的复杂性增加来确定每个块的目标比特长度。实验结果表明,与传统的一维SPIHT算法相比,该算法将平均峰值信噪比(PSNR)提高了2.97 dB。通过硬件实现,编码器和解码器设计的吞吐量均为6.15 Gbps,编码器和解码器设计的门数分别为42.8 K和57.7K。

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