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Joint Source Channel Decoding And Iterative Symbol Combining With Turbo Trellis-coded Modulation

机译:联合源信道解码和迭代符号与Turbo网格编码调制相结合

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摘要

A new joint source channel decoding (JSCD) scheme for turbo trellis-coded modulation is proposed which exploits symbol-a-priori probabilities to improve decoding performance. To obtain symbol-a-priori probabilities, we propose a new method which uses a time-stretched bit-level trellis of a variable length code (VLC) decoder alongside a symbol level trellis. Iterative symbol combining (ISC) is also integrated with the proposed JSCD scheme so that multiple transmissions of the same data packet can be combined to improve decoding. Essentially JSCD with ISC (JSCD-ISC) exploits two types of a-priori information. The first one being the symbol-a-priori probabilities derived from source statistics, and the second one is obtained from the saved extrinsic information of previously transmitted copies of the data. Several simulations with different VLC sources like Huffman and reversible variable length codes (RVLC), and for different number of retransmissions have been performed. The most striking result is obtained with RVLC, whereby using only two retransmissions, the JSCD-ISC scheme outperforms a conventional scheme using three retransmissions by 0.2 dB.
机译:提出了一种新的用于涡轮网格编码调制的联合源信道解码(JSCD)方案,该方案利用先验符号概率来提高解码性能。为了获得先验符号概率,我们提出了一种新方法,该方法将可变长度代码(VLC)解码器的时间拉伸位级网格与符号级网格一起使用。迭代符号合并(ISC)也与提出的JSCD方案集成在一起,因此可以合并同一数据包的多次传输以改善解码。本质上,带有ISC的JSCD(JSCD-ISC)利用两种类型的先验信息。第一个是从源统计信息中得出的先验符号概率,第二个是从先前传输的数据副本的已保存外部信息中获得的。使用不同的VLC源(例如霍夫曼(Huffman)和可逆可变长度码(RVLC))以及针对不同数量的重发进行了多次仿真。使用RVLC可获得最惊人的结果,其中,仅使用两次重传,JSCD-ISC方案就比使用三个重传的传统方案要高0.2 dB。

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