Dual diversity versus simple block coding for correlated frequency-selective fading channels

A. Abu-Dayya, N. Beaulieu
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引用次数: 1

Abstract

We investigate the effects of correlation on the performance of diversity systems in wide-band wireless radio environments. Specifically, the average bit error rate (BER) performance of M-ary differential phase shift keying (MDPSK) on correlated frequency-selective slow Rayleigh fading channel is analyzed. A two-branch diversity receiver with postdetection equal gain combining is considered. Nyquist pulse shaping is used and differential detection is employed at the receiver. The effects of cochannel interference on the system performance are assessed using a Gaussian interference model. To further enhance the system performance, the effects of combined diversity and forward error correction (FEC) coding on the average BER are investigated. Results using short cyclic block codes with perfect bit interleaving are obtained. The effects of the root mean square (RMS) delay spread, the amount of correlation, and the level of modulation, M, on the average BER are investigated in detail for both coded and uncoded systems. The results show that dual branch diversity combining with a correlation coefficient of 0.5 outperforms (in terms of BER) short block codes with perfect bit interleaving, and that combined diversity and coding strategies are effective in combatting the effects of frequency-selective fading.
相关选频衰落信道的双分集与简单分组编码
我们研究了相关对宽带无线环境下分集系统性能的影响。具体地说,分析了相关频率选择慢瑞利衰落信道上的m阶差分相移键控(MDPSK)的平均误码率(BER)性能。研究了一种检测后等增益组合的双支路分集接收机。采用奈奎斯特脉冲整形,接收机采用差分检测。利用高斯干扰模型评估了共信道干扰对系统性能的影响。为了进一步提高系统性能,研究了分集和前向纠错(FEC)组合编码对平均误码率的影响。使用具有完美位交错的短循环分组码的结果。对编码和非编码系统的平均误码率进行了详细研究,研究了均方根(RMS)延迟扩展、相关量和调制水平M对平均误码率的影响。结果表明,结合相关系数为0.5的双支路分集优于具有完美位交错的短分组码(就误码率而言),并且结合分集和编码策略可以有效地对抗频率选择性衰落的影响。
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