优化的无速率UEP代码可扩展的视频流

J. Zao, M. Hornansky, Pei-Lun Diao, Bo-Wei Wang, Chung-hsuan Wang, Li-Jen Chang
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引用次数: 2

摘要

无线视频流经常遭受严重和不同数量的数据包丢失。短长度Luby变换(SLLT)码通常用于提供必要的无速率或通用擦除保护。然而,尽管人们早已推导出了无限长llt码的渐近行为,但仍然缺乏一种寻找SLLT码最优度分布的熟练方法。在本文中,我们提出了一种实用的方法来寻找具有任意输入块长度的LT码的最优度分布。该方法首先基于编码开销ε、解码失败率r和失效概率p这三个性能指标建立了一个新的适应度模型。然后,我们采用指数自然进化策略(xNES)以及合适的初始度分布选择和基因型与表型之间的适当转换来搜索优化的度分布。用这种方法设计的优化SLLT码的性能远远优于用渐近逼近法得到的优化SLLT码。作为一个示例应用程序,我们使用这些优化的SLLT代码作为无速率邮政编码构建了一组无速率卷积UEP代码。这些编码为无线H.264/SVC广播提供了极好的通用不等擦除保护,编码开销仅为16%-20%。然而,这个设计练习明确了将SLLT邮政编码的无速率擦除校正能力与卷积预码的错误率敏感的UEP能力相匹配的必要性。代码匹配在改善视频播放的率失真性能方面的作用得到了明显的证明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimized rateless UEP codes for scalable video streaming
Wireless video streaming often suffers from heavy and varying amount of packet loss. Short-length Luby Transform (SLLT) codes are often employed to offer necessary rateless or universal erasure protection. Nevertheless, a proficient method for finding the optimal degree distributions of SLLT codes is still missing although the asymptotic behaviors of infinite-length LT codes have long been deduced. In this paper, we propose a practical approach to find the optimal degree distributions of LT codes with arbitrary input block lengths. Our approach starts with a new fitness model for the LT codes based on three performance measurements: their coding overhead ε, decoding failure ratio r and failure probability p. We then employed the exponential natural evolution strategy (xNES) along with a suitable choice of initial degree distribution and a proper transformation between the genotypes and the phenotypes to search for the optimized degree distributions. The optimized SLLT codes designed using this approach far outperforms the ones obtained through asymptotic approximation. As an example application, we constructed a family of rateless convolutional UEP codes using these optimized SLLT codes as the rateless postcodes. These codes offer superb universal unequal erasure protection to wireless H.264/SVC broadcasting with only 16%-20% coding overhead. This design exercise, however, made clear the necessity of matching the rateless erasure correction capability of the SLLT postcode with the error-rate sensitive UEP capability of the convolutional precode. The effect of code matching was demonstrated clearly in the improvement of rate-distortion performance of video playback.
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