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Entropy-constrained predictive trellis coded quantization and compression of hyperspectral imagery.

机译:熵约束的预测网格编码对高光谱图像的量化和压缩。

摘要

A training-sequence-based entropy-constrained predictive trellis coded quantization (ECPTCQ) scheme is presented for encoding autoregressive sources. For encoding a first-order Gauss-Markov source, the MSE performance of an 8-state ECPTCQ system exceeds that of entropy-constrained DPCM by up to 1.0 dB. In addition, three systems--an ECPTCQ system, a 3-D Discrete Cosine Transform (DCT) system and a hybrid system--are presented for compression of hyperspectral imagery which utilize trellis coded quantization (TCQ). Specifically, the first system utilizes a 2-D DCT and ECPTCQ. The 2-D DCT is used to transform all nonoverlapping 8 x 8 blocks of each band. Thereafter, ECPTCQ is used to encode the transform coefficients in the spectral dimension. The 3-D DCT system uses TCQ to encode transform coefficients resulting from the application of an 8 x 8 x 8 DCT. The hybrid system uses DPCM to spectrally decorrelate the data, while a 2-D DCT coding scheme is used for spatial decorrelation. Side information and rate allocation strategies for all systems are discussed. Entropy-constrained codebooks are optimized for various generalized Gaussian distributions using a modified version of the generalized Lloyd algorithm. The first system can compress a hyperspectral image sequence at 0.125 bits/pixel/band while retaining an average peak signal-to-noise ratio of greater than 43 dB over the spectral bands. The 3-D DCT and hybrid systems achieve compression ratios of 77:1 and 69:1 while maintaining average peak signal-to-noise ratios of 40.75 dB and 40.29 dB, respectively, over the coded bands.
机译:提出了一种基于训练序列的熵约束预测网格编码量化(ECPTCQ)方案,用于对自回归源进行编码。为了对一阶高斯-马尔可夫源进行编码,八态ECPTCQ系统的MSE性能比受熵约束的DPCM高出1.0 dB。此外,还提出了三种系统-ECPTCQ系统,3-D离散余弦变换(DCT)系统和混合系统-用于利用网格编码量化(TCQ)压缩高光谱图像。具体地,第一系统利用2-D DCT和ECCPCQ。二维DCT用于转换每个频带的所有不重叠的8 x 8块。此后,使用ECPTCQ对频谱维度中的变换系数进行编码。 3-D DCT系统使用TCQ编码因应用8 x 8 x 8 DCT而产生的变换系数。混合系统使用DPCM对数据进行频谱去相关,而将2-D DCT编码方案用于空间去相关。讨论了所有系统的辅助信息和速率分配策略。熵约束码本使用广义Lloyd算法的修改版本针对各种广义高斯分布进行了优化。第一系统可以以0.125比特/像素/频带压缩高光谱图像序列,同时在频谱频带上保持大于43dB的平均峰值信噪比。 3-D DCT和混合系统实现了77:1和69:1的压缩比,同时在编码频段上分别保持了40.75 dB和40.29 dB的平均峰值信噪比。

著录项

  • 作者

    Abousleman Glen Patrick.;

  • 作者单位
  • 年度 1994
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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