可扩展视频编码中低密度奇偶校验码的不等错误保护

Yong Liu, Saad B. Qaisar, H. Radha, Aidong Men
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引用次数: 6

摘要

在这项工作中,我们提出了一种不等错保护(UEP)方案,用于使用低密度奇偶校验(LDPC)码的可扩展视频编码。LDPC码以其接近容量的性能而闻名。在该框架中,基于可扩展视频编码(SVC) H.264/AVC标准文档对视频序列进行编码。我们根据时间和质量的可扩展性将SVC编码的视频流划分为不同的子流。这些子流使用低密度奇偶校验(LDPC)码进行信道编码,以增强对信道损伤的鲁棒性。根据各子流的显著性水平,对不同的子流采用不同编码率的LDPC码,以提供UEP。为了评估AWGN信道在不同信噪比和延迟约束下的误码率,我们建立了LDPC码解码失败的概率模型。为了进一步优化比特分配以最大限度地提高解码器重构视频的质量,防止信道引起的损坏,我们提出了一种优化比特分配算法(OBAA),该算法使用动态规划方法优化分配信道编码速率。为了得到LDPC编码的SVC视频的率失真特性,我们在OBAA中使用了所提出的概率模型。结果表明,与等错误保护(EEP)方案相比,UEP方案可以将不同编码率的LDPC码最优地分配到不同的子流中,显著降低了系统的端到端失真,从而提高了系统吞吐量
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On unequal error protection with low density parity check codes in scalable video coding
In this work, we propose an unequal error protection (UEP) scheme for scalable video coding using Low Density Parity Check (LDPC) codes. LDPC codes are renowned for their near-capacity performance. In the proposed framework, a video sequence is coded based on Scalable Video Coding (SVC) H.264/AVC standard document. We divide the SVC coded video stream into different sub-streams in terms of time and quality scalability. These sub-streams are channel-coded using Low Density Parity Check (LDPC) codes for robustness against channel impairments. LDPC codes with different coding rates are applied for different sub-streams according to the significance level of each sub-stream in order to provide UEP. We develop a probability model for decoding failure using LDPC codes in order to evaluate the bit error rate under different signal-to-noise ratios and delay constraints for an AWGN channel. Further motivated by optimally allocating the bits to maximize the quality of reconstructed video at the decoder against channel induced corruptions, we propose an Optimal Bit Allocation Algorithm (OBAA) that optimally allocates the channel coding rates using a dynamic programming approach. We use the proposed probability model in OBAA in order to obtain rate-distortion characteristics of LDPC coded SVC video. The results achieved clearly establish that the proposed UEP scheme can optimally allocate LDPC codes with different coding rates to different sub-streams that significantly decreases the end-to-end distortion of the system as compared to equal error protection (EEP) scheme resulting in greater system throughputs
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