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A low-complexity and efficient encoder rate control solution for distributed residual video coding

机译:用于分布式残差视频编码的低复杂度和高效编码器速率控制解决方案

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摘要

Existing encoder rate control (ERC) solutions have two technical limitations that prevent them from being widely used in real-world applications. One is that encoder side information (ESI) is required to be generated which increases the complexity at the encoder. The other is that rate estimation is performed at bit plane level which incurs computation overheads and latency when many bit planes exist. To achieve a low-complexity encoder, we propose a new ERC solution that combines an efficient encoder block mode decision (EBMD) for the distributed residual video coding (DRVC). The main contributions of this paper are as follows: 1) ESI is not required as our ERC is based on the analysis of the statistical characteristics of the decoder side information (DSI); 2) a simple EBMD is introduced which only employs the values of residual pixels at the encoder to classify blocks into Intra mode, Skip mode, and WZ mode; 3) an ERC solution using pseudo-random sequence scrambling is proposed to estimate rates for all WZ blocks at frame level instead of at bit plane level, i.e., only one rate is estimated; and 4) a quantization-index estimation algorithm (QIEA) is proposed to solve the problem of rate underestimation. The simulation results show that the proposed solution is not only low complex but also efficient in both the block mode decision and the rate estimation. Also, as compared to DISCOVER system and the state-of-the-art ERC solution, our solution demonstrates a competitive rate-distortion(RD)performance. Due to maintain the low-complexity nature of the encoder and have good RD performance, we believe that our ERC solution is promising in practice.
机译:现有的编码器速率控制(ERC)解决方案具有两个技术局限性,使其无法在实际应用中广泛使用。一种是需要生成编码器辅助信息(ESI),这会增加编码器的复杂性。另一个是速率估计是在位平面级别执行的,这在存在许多位平面时会导致计算开销和等待时间。为了实现低复杂度的编码器,我们提出了一种新的ERC解决方案,该解决方案结合了有效的编码器块模式决策(EBMD)来进行分布式残差视频编码(DRVC)。本文的主要贡献如下:1)不需要ESI,因为我们的ERC基于对解码器辅助信息(DSI)的统计特性的分析; 2)引入了一个简单的EBMD,它仅使用编码器上的剩余像素值将块分为帧内模式,跳过模式和WZ模式; 3)提出了一种使用伪随机序列加扰的ERC解决方案来估计所有WZ块在帧级别而不是比特平面级别的速率,即,仅估计一种速率; 4)提出了一种量化指标估计算法(QIEA)来解决速率低估的问题。仿真结果表明,所提出的解决方案不仅具有较低的复杂度,而且在块模式决策和速率估计方面均有效。此外,与DISCOVER系统和最新的ERC解决方案相比,我们的解决方案展现出极具竞争力的速率失真(RD)性能。由于保持编码器的低复杂度特性并具有良好的RD性能,我们认为我们的ERC解决方案在实践中很有希望。

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