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A Two-Stage Decoder for Pragmatic Trellis-Coded M-PSK Modulation Using a Symbol Transformation

机译:使用符号变换的实用网格编码M-PSK调制的两阶段解码器

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摘要

A two-stage decoding procedure for pragmatic trellis-coded modulation (TCM) is introduced. It applies a transformation from the received I-channel and Q-channel samples onto points in a two-dimensional (2-D) signal space that contains a coset constellation. For pragmatic TCM over M-PSK signal sets with ν coded bits per symbol, ν=1, 2, the signal points in the coset constellations represent cosets of a B/QPSK signal subset-associated with the coded bits-in the original M-PSK signal constellation. A conventional Viterbi decoder operates on the transformed symbols to estimate the coded bits. After reencoding these bits, the uncoded bits are estimated in a second stage, on a symbol-by-symbol basis, with decisions based on the location of the received symbols. In addition to requiring no changes in the Viterbi decoder core, it is shown that the proposed method results in savings of up to 40% in the memory required to store (or in the size of the logic required to compute) metrics and transformed symbols.
机译:介绍了一种实用的网格编码调制(TCM)的两阶段解码过程。它对接收到的I通道和Q通道样本进行了转换,将其转换到包含陪集星座的二维(2-D)信号空间中的点。对于M-PSK信号集上具有务实的TCM信号集(每个符号ν个编码位,ν= 1、2),陪集星座中的信号点表示与原始M- PSK信号星座图。传统的维特比解码器对变换后的符号进行操作以估计编码位。在对这些比特重新编码之后,在第二阶段中,在逐个符号的基础上估计未编码的比特,并基于接收到的符号的位置进行决策。除了不需要在Viterbi解码器内核中进行任何更改之外,还表明,所提出的方法可节省多达40%的内存,以存储度量(和计算所需逻辑的大小)和度量和转换后的符号。

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