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Performance Analysis of Multiuser DS-CDMA in MIMO Systems Over Rayleigh Fading Channels

机译:瑞利衰落信道下MIMO系统中多用户DS-CDMA的性能分析

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The performance of space–time transmit diversity is examined in a multiuser direct-sequence code-division multiple-access (DS-CDMA) system over fast- and slow-fading channels. The underlying space–time system employs $N = 2$ transmit antennas and $M$ receive antennas at the mobile user and receiver base station, respectively. We consider the performance of the space–time multiuser system when using the linear decorrelator detector to combat the effect of multiuser interference. In our analysis, we derive a closed-form expression for the probability of bit error for both fast- and slow-fading channels. These theoretical results are shown to be very accurate when compared to system simulations. Both simulations and theoretical results prove that, regardless of the system load, the full diversity order of $2NM$ for fast-fading channels and $NM$ for slow-fading channels is always maintained, and only a signal-to-noise ratio (SNR) loss is incurred. This SNR loss is proved to be a function of only the number of users (i.e., level of interference) and independent of the number of transmit and/or receive antennas. Using our theoretical results, we show that the loss in SNR from the single-user bound can be well approximated by $10log (C/2)$, where $C$ represents the level of multiuser interference.
机译:在多用户直接序列码分多址(DS-CDMA)系统中,通过快退和慢退信道,研究了时空传输分集的性能。基本的时空系统在移动用户和接收器基站分别使用$ N = 2 $个发射天线和$ M $个接收天线。当使用线性去相关器检测器来对抗多用户干扰的影响时,我们考虑了时空多用户系统的性能。在我们的分析中,我们为快衰落信道和慢衰落信道的误码率导出了一个封闭形式的表达式。与系统仿真相比,这些理论结果显示非常准确。仿真和理论结果都证明,无论系统负载如何,快衰落信道的全分集阶数为2NM $,慢衰落信道的全分集阶数始终保持不变,并且仅信噪比( SNR)损失。证实该SNR损耗仅是用户数量(即,干扰水平)的函数,并且与发射和/或接收天线的数量无关。使用我们的理论结果,我们表明,单用户范围的SNR损失可以很好地近似为$ 10log(C / 2)$,其中$ C $表示多用户干扰的水平。

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