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Analytical Rate-Distortion-Complexity Modeling of Wavelet-Based Video Coders

机译:基于小波的视频编码器的失真率失真分析模型

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Analytical modeling of the performance of video coders is essential in a variety of applications, such as power-constrained processing, complexity-driven video streaming, etc., where information concerning rate, distortion, or complexity (and their interrelation) is required. In this paper, we present a novel rate-distortion-complexity (R-D-C) analysis for state-of-the-art wavelet video coding methods by explicitly modeling several aspects found in operational coders, i.e., embedded quantization, quadtree decompositions of block significance maps and context-adaptive entropy coding of subband blocks. This paper achieves two main goals. First, unlike existing R-D models for wavelet video coders, the proposed derivations reveal for the first time the expected coding behavior of specific coding algorithms (e.g., quadtree decompositions, coefficient significance, and refinement coding) and, therefore, can be used for a variety of coding mechanisms incorporating some or all the coding algorithms discussed. Second, the proposed modeling derives for the first time analytical estimates of the expected number of operations (complexity) of a broad class of wavelet video coding algorithms based on stochastic source models, the coding algorithm characteristics and the system parameters. This enables the formulation of an analytical model characterizing the complexity of various video decoding operations. As a result, this paper complements prior complexity-prediction research that is based on operational measurements. The accuracy of the proposed analytical R-D-C expressions is justified against experimental data obtained with a state-of-the-art motion-compensated temporal filtering based wavelet video coder, and several new insights are revealed on the different tradeoffs between rate-distortion performance and the required decoding complexity.
机译:视频编码器性能的分析建模在各种应用中至关重要,例如功耗受限的处理,复杂度驱动的视频流等,其中需要有关速率,失真或复杂度(及其相互关系)的信息。在本文中,我们通过对操作编码器中发现的多个方面进行显式建模,从而为最新的小波视频编码方法提供了一种新颖的速率失真复杂度(RDC)分析,即嵌入量化,块重要性图的四叉树分解子带块的上下文自适应熵编码。本文实现了两个主要目标。首先,与现有的用于小波视频编码器的RD模型不同,拟议的推导首次揭示了特定编码算法的预期编码行为(例如,四叉树分解,系数有效度和细化编码),因此可用于多种结合了部分或全部讨论的编码算法的编码机制。其次,所提出的模型首次基于随机源模型,编码算法特性和系统参数,得出了广泛的小波视频编码算法的预期操作次数(复杂度)的分析估计。这使得能够形成表征各种视频解码操作的复杂性的分析模型。因此,本文对基于操作度量的先前的复杂性预测研究进行了补充。相对于使用基于最新运动补偿时间滤波的小波视频编码器获得的实验数据,所提出的解析RDC表达式的准确性是合理的,并且在速率失真性能和噪声失真之间的不同折衷方面揭示了一些新见解。所需的解码复杂度。

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