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2-Step Scalar Deadzone Quantization for Bitplane Image Coding

机译:用于位平面图像编码的两步标量死区量化

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Modern lossy image coding systems generate a quality progressive codestream that, truncated at increasing rates, produces an image with decreasing distortion. Quality progressivity is commonly provided by an embedded quantizer that employs uniform scalar deadzone quantization (USDQ) together with a bitplane coding strategy. This paper introduces a 2-step scalar deadzone quantization (2SDQ) scheme that achieves same coding performance as that of USDQ while reducing the coding passes and the emitted symbols of the bitplane coding engine. This serves to reduce the computational costs of the codec and/or to code high dynamic range images. The main insights behind 2SDQ are the use of two quantization step sizes that approximate wavelet coefficients with more or less precision depending on their density, and a rate-distortion optimization technique that adjusts the distortion decreases produced when coding 2SDQ indexes. The integration of 2SDQ in current codecs is straightforward. The applicability and efficiency of 2SDQ are demonstrated within the framework of JPEG2000.
机译:现代有损图像编码系统生成质量渐进的码流,该流以不断增加的速率被截断,从而生成失真降低的图像。质量累进性通常由嵌入式量化器提供,该量化器采用统一的标量死区量化(USDQ)和位平面编码策略。本文介绍了一种两步标量死区量化(2SDQ)方案,该方案可实现与USDQ相同的编码性能,同时减少了位平面编码引擎的编码次数和发射符号。这用于减少编解码器的计算成本和/或对高动态范围图像进行编码。 2SDQ背后的主要见解是使用两个量化步长,这些大小取决于小波系数的密度,以近似或近似的精度逼近小波系数;以及一种率失真优化技术,该技术可以调整在编码2SDQ索引时产生的失真减小。 2SDQ在当前编解码器中的集成非常简单。在JPEG2000框架内展示了2SDQ的适用性和效率。

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