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Spectral efficiency for MIMO orthogonal MC DS-CDMA system over Nakagami-m fading channels

机译:NAKAGAMI-M褪色通道的MIMO正交MC DS-CDMA系统的光谱效率

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Multiple Input Multiple Output (MIMO) systems have appeared as one of the promising approaches for increasing the capacity and lowering symbol or bit error probability of the wireless communication systems without increasing the bandwidth or the transmission power of the system. In this paper, we investigate the average channel capacity for MIMO orthogonal multicarrier direct Sequence Code Division Multiple Access (OMC DS-CDMA) system in Nakagami-m fading environment. We also consider the influence of the normalized space between two adjacent subcarriers of the system in average channel capacity analysis. Gaussian approximation method is employed to model multiuser interference (MUI) which mostly degrades the system performance. Hence, probability density function (PDF) of the instantaneous signal to interference noise ratio (SINR) is derived using Characteristic Function (CF) based method. Therefore, the exact closed form expression for the average channel capacity is derived by taking the expectation of Shannon channel capacity over the PDF of SINR. The results reveal that the average channel capacity of the MIMO OMC DS-CDMA system outperforms that of the conventional OMC DS-CDMA system. Similarly, we observe that MIMO MC DS-CDMA system has better spectral efficiency. Thus, we confirm the numerical results using Monte Carlo simulation technique.
机译:多输入多输出(MIMO)系统出现为增加无线通信系统的容量和降低符号或误码概率的有希望的方法之一,而不增加系统的带宽或传输功率。在本文中,我们研究了NAKAGAMI-M褪色环境中MIMO正交多载波直接序列码分多次访问(OMC DS-CDMA)系统的平均通道容量。我们还考虑平均信道容量分析中系统两个相邻子载波之间的归一化空间的影响。高斯近似方法用于模拟多用户干扰(MUI),这些干扰(MUI)大多降低了系统性能。因此,使用基于特征函数(CF)的方法导出瞬时信号与干扰噪声比(SINR)的概率密度函数(PDF)。因此,通过在SINR的PDF上预期Shannon频道容量来导出平均信道容量的确切闭合形式表达。结果表明,MIMO OMC DS-CDMA系统的平均信道容量优于传统OMC DS-CDMA系统的效果。同样,我们观察到MIMO MC DS-CDMA系统具有更好的光谱效率。因此,我们使用Monte Carlo仿真技术确认数值结果。

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