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A new approximation to the symbol error probability for coded modulation schemes with maximum likelihood sequence detection

机译:具有最大似然序列检测的编码调制方案的符号错误概率的新近似

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The power efficiency of coded modulation schemes in additive white Gaussian noise depends on the signal space distribution of their most common error events. Symbol error probability calculation allowing for the pairwise interaction of these error events is discussed. Two optimality criteria are considered for detectors. The first minimizes the probability of symbol error for each symbol decision. This is called the symbol-to-symbol detector. The second (which is superior) is the maximum likelihood sequence detector (MLSD). A lower bound for the symbol-to-symbol detector and an approximation to the MLSD symbol error probability are described. The theoretical performance difference between these two detectors is given. The results are more accurate than minimum squared Euclidean distance predictions, especially at low and intermediate signal-to-noise ratios. The MLSD symbol error probability approximation is obtained for considerably less cost than computer simulation and gives more insight into the signal space structure of the scheme being analyzed. Numerical results are presented for a continuous phase modulation (CPM) example.
机译:加性高斯白噪声中编码调制方案的功率效率取决于其最常见错误事件的信号空间分布。讨论了允许这些错误事件成对交互的符号错误概率计算。为检测器考虑了两个最佳标准。第一个使每个符号决策的符号错误的可能性最小化。这称为符号到符号检测器。第二个(更好)是最大似然序列检测器(MLSD)。描述了符号到符号检测器的下限和MLSD符号错误概率的近似值。给出了这两个检测器之间的理论性能差异。结果比最小平方欧几里德距离预测更准确,尤其是在低和中等信噪比的情况下。与计算机仿真相比,MLSD符号错误概率近似值的成本要低得多,并且可以更深入地了解所分析方案的信号空间结构。给出了连续相位调制(CPM)示例的数值结果。

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