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Performance Analysis of $n$-Channel Symmetric FEC-Based Multiple Description Coding for OFDM Networks

机译:基于n信道对称FEC的OFDM多描述编码性能分析

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Recently, multiple description source coding has emerged as an attractive framework for robust multimedia transmission over packet erasure channels. In this paper, we mathematically analyze the performance of $n$-channel symmetric FEC-based multiple description coding for a progressive mode of transmission over orthogonal frequency division multiplexing (OFDM) networks in a frequency-selective slowly-varying Rayleigh faded environment. We derive the expressions for the bounds of the throughput and distortion performance of the system in an explicit closed form, whereas the exact performance is given by an expression in the form of a single integration. Based on this analysis, the performance of the system can be numerically evaluated. Our results show that at high SNR, the multiple description encoder does not need to fine-tune the optimization parameters of the system due to the correlated nature of the subcarriers. It is also shown that, despite the bursty nature of the errors in a slow fading environment, FEC-based multiple description coding without temporal coding provides a greater advantage for smaller description sizes.
机译:近来,多描述源编码已经成为用于在分组擦除信道上进行健壮的多媒体传输的有吸引力的框架。在本文中,我们在频率选择缓慢变化的瑞利衰落环境中,通过数学分析了基于$ n $通道基于对称FEC的多描述编码在正交频分多路复用(OFDM)网络上的渐进传输模式下的性能。我们以显式封闭形式导出系统吞吐量和失真性能范围的表达式,而确切的性能由单集成形式的表达式给出。基于此分析,可以对系统的性能进行数值评估。我们的结果表明,在高SNR时,由于子载波的相关性质,多描述编码器不需要微调系统的优化参数。还表明,尽管在慢衰落环境中错误具有突发性质,但是基于FEC的多描述编码而不进行时间编码为较小的描述大小提供了更大的优势。

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