Signal Processing Laboratory, Swiss Federal Institute of Technology, 1015 Lausanne, Switzerland.
IEEE Trans Image Process. 2001;10(3):383-92. doi: 10.1109/83.908504.
The use of the discrete wavelet transform (DWT) for embedded lossy image compression is now well established. One of the possible implementations of the DWT is the lifting scheme (LS). Because perfect reconstruction is granted by the structure of the LS, nonlinear transforms can be used, allowing efficient lossless compression as well. The integer wavelet transform (IWT) is one of them. This is an interesting alternative to the DWT because its rate-distortion performance is similar and the differences can be predicted. This topic is investigated in a theoretical framework. A model of the degradations caused by the use of the IWT instead of the DWT for lossy compression is presented. The rounding operations are modeled as additive noise. The noise are then propagated through the LS structure to measure their impact on the reconstructed pixels. This methodology is verified using simulations with random noise as input. It predicts accurately the results obtained using images compressed by the well-known EZW algorithm. Experiment are also performed to measure the difference in terms of bit rate and visual quality. This allows to a better understanding of the impact of the IWT when applied to lossy image compression.
离散小波变换 (DWT) 在嵌入式有损图像压缩中的应用已经得到了很好的验证。DWT 的一种可能实现方法是提升方案 (LS)。由于 LS 的结构保证了完全重建,因此可以使用非线性变换,从而实现高效的无损压缩。整数小波变换 (IWT) 就是其中之一。这是 DWT 的一个有趣替代品,因为它的率失真性能相似,而且差异可以预测。本文从理论框架的角度探讨了这一主题。提出了一种使用 IWT 进行有损压缩而不是 DWT 引起的退化模型。舍入操作被建模为附加噪声。然后通过 LS 结构传播这些噪声,以测量它们对重建像素的影响。使用随机噪声作为输入的模拟验证了该方法的有效性。它准确地预测了使用著名的 EZW 算法压缩图像所获得的结果。还进行了实验以测量在比特率和视觉质量方面的差异。这有助于更好地理解在应用于有损图像压缩时 IWT 的影响。