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Subband image coding using watershed and watercourse lines of the wavelet transform

机译:使用小波变换的分水岭和水道线进行子带图像编码

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Reports progress in primitive-based image coding using nonorthogonal dyadic wavelets. A 3D isotropic wavelet is used to approximate the difference-of-Gaussians (D-o-G) operator. Convolution of the image with dilated versions of the wavelet produces three band-pass signals that approximate multiscale smoothed second derivatives. An additional convolution of the image with a Gaussian-shaped low-pass wavelet creates a fourth subband signal that preserves low-frequency information not described by the three band-pass signals. The authors show that the original image can be recovered from the watershed and watercourse lines of the three band-pass signals plus the lowpass subband signal. By thresholding the watershed/watercourse representation, subsampling the low-pass subband, and using edge post emphasis, the authors achieve data reduction with little loss of fidelity. Further compression of the watersheds and watercourses is achieved by chain coding their shapes and predictive coding their amplitudes prior to lossless arithmetic coding. Results are presented for grey-level test images at data rates between 0.1 and 0.3 b/pixel.
机译:报告使用非正交二进小波的基于基元的图像编码的进展。 3D各向同性小波用于近似高斯差(D-o-G)算子。图像与小波的扩张版本进行卷积会产生三个带通信号,它们近似于多尺度平滑二阶导数。图像与高斯形状​​的低通小波的另一次卷积会创建一个第四子带信号,该信号保留未由三个带通信号描述的低频信息。作者表明,可以从三个带通信号加上低通子带信号的分水岭和水道线中恢复原始图像。通过对分水岭/水道表示进行阈值处理,对低通子带进行二次采样以及使用边缘后强调,作者可以在不降低保真度的情况下实现数据缩减。在无损算术编码之前,通过对流域和水道的形状进行链式编码并对其幅度进行预测性编码,可以实现对流域和水道的进一步压缩。呈现了灰度测试图像的结果,数据速率介于0.1和0.3 b /像素之间。

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