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Differential Encoding by a Look-Up Table for Quadrature-Amplitude Modulation

机译:通过查找表进行差分编码以实现正交幅度调制

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摘要

In this paper, we propose a novel differential encoder for QAM (quadrature-amplitude modulation), by a look-up table instead of a rule. Using a table for differential encoding has the advantages of both low complexity and good error performance. We propose algorithms to construct the table for maximizing the minimum noncoherent distance and minimizing the number of different data bits between two codewords with small noncoherent distance. For 16QAM and 32QAM, we show that the differential encoders obtained by the proposed algorithms are optimal in terms of minimum noncoherent distance. Differential detectors for QAM, including a reduced-complexity two-symbol detector and multiple-symbol detectors, are proposed as well. Simulation results of 16QAM show that the proposed differential encoder provides significant gain over existent differential encoders as expected by distance analysis, and the proposed low-complexity multiple-symbol differential detector can further improve the error performance.
机译:在本文中,我们通过查找表而不是规则,提出了一种新颖的QAM(正交幅度调制)差分编码器。使用表进行差分编码具有以下优势:低复杂度和良好的错误性能。我们提出了一种算法来构造表,以最大化最小非相干距离,并最小化具有较小非相干距离的两个码字之间的不同数据位数。对于16QAM和32QAM,我们证明了通过所提出的算法获得的差分编码器在最小非相干距离方面是最佳的。还提出了用于QAM的差分检测器,包括复杂度降低的两个符号检测器和多个符号检测器。 16QAM的仿真结果表明,所提出的差分编码器与现有的差分编码器相比具有远距离分析所预期的显着增益,并且所提出的低复杂度多符号差分检测器可以进一步提高误差性能。

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