视觉无损JPEG 2000解码器

Leandro Jimenez-Rodriguez, Francesc Aulí Llinàs, M. Marcellin, J. Serra-Sagristà
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引用次数: 3

摘要

视觉无损编码是一种方法,通过这种方法对图像进行编码,使其具有视觉检查无法注意到的数字损失。与数字无损编码相反,视觉无损编码可以实现高压缩比。一般来说,从编码器的角度来看,视觉无损编码是接近的,也就是说,作为一个程序设计从原始图像产生压缩码流。如果图像已经被编码为非常高的保真度(高于视觉无损-甚至可能是数字无损),那么在不完全重新编码图像的情况下,创建一个视觉无损的版本是不容易的。然而,对于大型存储库,重新编码可能不是一个合适的选择。视觉无损解码器可能只对解码或解析和传输视觉无损重建所需的数据有用。这项工作介绍了一个用于JPEG 2000码流的解码器,它可以识别和解码产生视觉无损图像所需的最小信息量。提出的方法背后的主要见解是在解码过程之前估计代码块的方差,并使用文献中众所周知的模型确定可见性阈值。其主要优点是解码速度更快,并且可以使用最小的比特率传输视觉无损图像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Visually Lossless JPEG 2000 Decoder
Visually lossless coding is a method through which an image is coded with numerical losses that are not noticeable by visual inspection. Contrary to numerically lossless coding, visually lossless coding can achieve high compression ratios. In general, visually lossless coding is approached from the point of view of the encoder, i.e., as a procedure devised to generate a compressed code stream from an original image. If an image has already been encoded to a very high fidelity (higher than visually lossless - perhaps even numerically lossless), it is not straightforward to create a just visually lossless version without fully re-encoding the image. However, for large repositories, re-encoding may not be a suitable option. A visually lossless decoder might be useful to decode, or to parse and transmit, only the data needed for visually lossless reconstruction. This work introduces a decoder for JPEG 2000 code streams that identifies and decodes the minimum amount of information needed to produce a visually lossless image. The main insights behind the proposed method are to estimate the variance of the code blocks before the decoding procedure, and to determine the visibility thresholds employing a well-known model from the literature. The main advantages are faster decoding and the possibility to transmit visually lossless images employing minimal bit rates.
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