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Modified Viterbi algorithm for efficient optimal decoding of pragmatic-punctured trellis-coded modulation

机译:改进的Viterbi算法可有效地优化语用穿孔网格编码调制的解码

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In classic trellis-coded modulation (TCM) signal constellations of twice the cardinality are applied when compared to an uncoded transmission enabling transmission of one bit of redundancy per PAM-symbol, i.e., rates of K when 2 denotes the cardinality of the signal constellation. In order to support different rates, multi-dimensional (i.e., D-dimensional) constellations had been proposed by means of combining subsequent one- or two-dimensional modulation steps, resulting in TCM-schemes with bit redundancy per real dimension. In contrast we propose in this paper to perform rate adjustment for TCM by means of puncturing the convolutional code (CC) on which a TCM-scheme is based on. Even though TCM is a topic that has received a lot of attention over the years, the problem of optimal and complexity efficient decoding of a punctured convolutional encoder in TCM was not yet solved without some drawbacks. Here we overcome this problems by usage of a time-variant trellis following the nontrivial mapping of the output symbols of the CC to signal points. For this, some modifications of the Viterbi-decoder are presented and good generator polynomials for the CC as well as corresponding puncturing schemes are given. The proposed approach offers several decisive advantages over multidimensional TCM w.r.t. flexibility and complexity.
机译:在经典的网格编码调制(TCM)信号星座图中,与没有编码的传输相比,其基数是基数的两倍,从而可以每个PAM符号传输一位冗余,即当2表示信号星座图的基数时的K速率。为了支持不同的速率,已经提出了通过组合随后的一维或二维调制步骤的方式来构建多维(即,D维)星座的方法,从而导致了每实际维数具有比特冗余的TCM方案。相反,我们在本文中建议通过打孔TCM方案所基于的卷积码(CC)来对TCM进行速率调整。尽管多年来TCM是一个备受关注的话题,但在TCM中对穿孔卷积编码器进行最优且复杂度高的解码问题尚未解决,但仍存在一些缺陷。在这里,我们通过在CC的输出符号到信号点的非平凡映射之后使用时变网格来克服此问题。为此,提出了维特比解码器的一些修改,并给出了用于CC的良好生成多项式以及相应的删余方案。与多维TCM w.r.t.相比,提出的方法具有几个决定性的优势。灵活性和复杂性。

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