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A Unified Approach to BER Analysis of Synchronous Downlink CDMA Systems with Random Signature Sequences in Fading Channels with Known Channel Phase

机译:信道相位已知的衰落信道中具有随机签名序列的同步下行CDMA系统的BER分析的统一方法

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A detailed analysis of the multiple access interference (MAI) for synchronous downlink CDMA systems is carried out for BPSK signals with random signature sequences in Nakagami- fading environment with known channel phase. This analysis presents a unified approach as Nakagami- fading is a general fading distribution that includes the Rayleigh, the one-sided Gaussian, the Nakagami- , and the Rice distributions as special cases. Consequently, new explicit closed-form expressions for the probability density function (pdf ) of MAI and MAI plus noise are derived for Nakagami- , Rayleigh, one-sided Gaussian, Nakagami- , and Rician fading. Moreover, optimum coherent reception using maximum likelihood (ML) criterion is investigated based on the derived statistics of MAI plus noise and expressions for probability of bit error are obtained for these fading environments. Furthermore, a standard Gaussian approximation (SGA) is also developed for these fading environments to compare the performance of optimum receivers. Finally, extensive simulation work is carried out and shows that the theoretical predictions are very well substantiated.
机译:在已知信道相位的Nakagami衰落环境中,针对具有随机签名序列的BPSK信号,对同步下行链路CDMA系统的多址干扰(MAI)进行了详细分析。由于Nakagami-fading是包括Rayleigh,单面高斯分布,Nakagami-和Rice分布的特例,因此Nakagami-fading是一种一般的衰落分布,因此该分析提出了一种统一的方法。因此,针对Nakagami-,Rayleigh,单面高斯,Nakagami-和Rician衰落,推导了MAI和MAI加噪声的概率密度函数(pdf)的新的显式闭式表达式。此外,基于推导的MAI加噪声统计数据,研究了使用最大似然(ML)准则的最佳相干接收,并针对这些衰落环境获得了误码概率的表达式。此外,还针对这些衰落环境开发了标准的高斯近似(SGA),以比较最佳接收机的性能。最后,进行了广泛的仿真工作,结果表明理论预测得到了很好的证实。

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