Irregularly distributed triangular quadrature amplitude modulation

Sung-Joon Park, Moo-Kwang Byeon
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引用次数: 15

Abstract

The recently suggested triangular quadrature amplitude modulation (TQAM) provides considerable power gain over square quadrature amplitude modulation (SQAM) at the expense of slight increase in detection complexity. However, power gain of the TQAM is limited on account of the constraint that signal points are regularly distributed at the vertexes of contiguous equilateral triangles. In this paper, we investigate a modified signal constellation of the TQAM where signal points are irregularly distributed while preserving triangular structure, and calculate achievable power gain of the proposed scheme. We also address optimum and suboptimum bit stream mapping methods and suggest a simple and optimum detection method for the constellation to be meaningful in practical implementation. Analysis and simulation show that the proposed constellation provides power gains of 0.62 dB and 0.20 dB over the SQAM and the TQAM at a target symbol error rate of 10-6 for 64-ary case.
不规则分布的三角正交调幅
最近提出的三角正交调幅(TQAM)比方形正交调幅(SQAM)提供了相当大的功率增益,但代价是检测复杂性略有增加。然而,由于信号点在连续的等边三角形的顶点上有规则分布的约束,TQAM的功率增益受到限制。本文研究了一种改进的TQAM信号星座,在保留三角形结构的情况下,信号点不规则分布,并计算了该方案的可实现功率增益。我们还讨论了最优和次优比特流映射方法,并提出了一种简单和最优的星座检测方法,在实际实现中有意义。分析和仿真表明,在64位码误码率为10-6的情况下,该星座比SQAM和TQAM分别获得0.62 dB和0.20 dB的功率增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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