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SER Analysis of QAM with Space Diversity in Rayleigh Fading Channels

机译:瑞利衰落信道中具有空间分集的QAM的SER分析

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This paper derives the symbol error probability for quadrature amplitude modulation(QAM) with L-fold space diversity in Rayleigh fading channels. Two combining techniques, maximal ratio combin-ing(MRC) and selection combining(SC), are considered. The formula for MRC space diversity is obtained by averaging the symbol error probability of M-ary QAM in an additive white Gaussian noise(AWGN) channel over a chi-square distribution with 2L degrees of freedom. The obtained formula overcomes the limitations of the earlier work, which has been limited only to deriving the symbol error rate(SER) of QAM with two branch MRC space diversity. The formula for SC space diversity is obtained by averaging the symbol error probability of M-ary QAM in an AWGN channel over the distribution of the maximum signal-to-noise ratio among all of the diversity channels for SC space diversity. No analysis for QAM with SC space diversity has been reported yet. Analytical results show that the probability of error decreases with the order of diversity. We can also see that the incremental diversity gain per additional branch decreases as the number of branches becomes larger. On the other hand, the performance of 16 QAM with MRC becomes much better than that of SC as the number of branches becomes larger. By giving the order of diversity, L, and the number of signal points, M, we have been able to obtain the SER performance of QAM with general space diversity. These results can be used to determine the order of diversity to achieve the desired SER in land mobile communication system employing QAM modulation.
机译:推导了瑞利衰落信道中具有L倍空间分集的正交幅度调制(QAM)的符号误差概率。考虑了两种组合技术:最大比率组合(MRC)和选择组合(SC)。通过在具有2L自由度的卡方分布上对加性高斯白噪声(AWGN)通道中的Mary QAM的符号错误概率求平均,得出MRC空间分集的公式。所获得的公式克服了先前工作的局限性,该局限性仅限于导出具有两个分支MRC空间分集的QAM的符号错误率(SER)。 SC空间分集的公式是通过在SC空间分集的所有分集信道之间最大信噪比分布上对AWGN信道中的Mary QAM的符号错误概率求平均而获得的。尚未报道对具有SC空间多样性的QAM的分析。分析结果表明,错误概率随着多样性的顺序而降低。我们还可以看到,随着分支数量的增加,每增加一个分支的增量分集增益会降低。另一方面,随着分支数量的增加,带有MRC的16 QAM的性能变得比SC更好。通过给出分集的阶数L和信号点的数量M,我们已经能够获得具有一般空间分集的QAM的SER性能。这些结果可用于确定采用QAM调制的陆地移动通信系统中实现所需SER的分集顺序。

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