Combining FEC and optimal soft-input source decoding for the reliable transmission of correlated variable-length encoded signals

J. Kliewer, R. Thobaben
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引用次数: 30

Abstract

We utilize both the implicit residual source correlation and the explicit redundancy from a forward error correction (FEC) scheme for the error protection of packetized variable-length encoded source indices. The implicit source correlation is exploited in a novel symbol-based soft-input a-posteriori probability (APP) decoder, which leads to an optimal decoding process in combination with a mean-squares or maximum a-posteriori probability estimation of the reconstructed source signal. When, additionally, the variable-length encoded source data is protected by channel codes, an iterative source-channel decoder can be obtained in the same way as for serially concatenated codes, where the outer constituent decoder is replaced by the proposed APP source decoder. Simulation results show that, by additionally considering the correlations between the variable-length encoded source indices, the error-correction performance can be highly increased.
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将FEC与最优软输入源解码相结合,实现相关变长编码信号的可靠传输
利用隐式残差源相关和前向纠错(FEC)方案的显式冗余,对分组变长编码源索引进行了纠错保护。在一种新型的基于符号的软输入后验概率(APP)解码器中利用了隐式源相关,该解码器结合重构源信号的均方或最大后验概率估计实现了最优的解码过程。此外,当变长编码的源数据受到信道码的保护时,可以通过与串行连接码相同的方式获得迭代源-信道解码器,其中外部组成解码器由所提出的APP源解码器替换。仿真结果表明,通过额外考虑变长编码源指标之间的相关性,可以大大提高系统的纠错性能。
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