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Performance Characterization of MIMO Channels with Hybrid Diversity

机译:具有混合分集的MIMO信道的性能表征

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Recent advances have demonstrated that multiple-input multiple-output (MIMO) wireless technology can achieve impressive enhancement in overall system performance. It offers spatial multiplexing and spatial diversity without increasing either the total system power nor the bandwidth and thus offering the potential for substantial improvements in channel capacity and spectral efficiency. However, the high dependence of its channel capacity on the correlation between antenna elements represents the main drawback of MIMO systems. Therefore, multi-polarized antennas have been implemented in these systems to reduce the antenna correlation and realize compact devices. This article is intended for the hybrid diversity (space and polarization) performance analysis of MIMO channels in indoor environment under non-line-of-sight (NLOS) condition. It investigates the effect of inter-element spacing on the cross-polar discrimination (XPD) and co-polar ratio (CPR). In this regard, the capacity as well as bit error rate (BER) performance of hybrid MIMO system is analyzed to draw a fair comparison between it and dual polarized along with spatial diversity techniques. The simulation results show that the hybrid diversity has a middle performance between these two scenarios of system implementations. Additionally, the performance of hybrid diversity is clearly enhanced in comparison with the dual polarized condition of operation, as the separation between the antennas increases. Moreover, as a function of the antenna separation, the spatial diversity system performance is varying slower than that of hybrid diversity case.
机译:最近的进展表明,多输入多输出(MIMO)无线技术可以在整体系统性能方面实现令人印象深刻的增强。它提供了空间多路复用和空间分集,而又不增加总系统功率或带宽,因此具有极大提高信道容量和频谱效率的潜力。然而,其信道容量对天线元件之间的相关性的高度依赖性代表了MIMO系统的主要缺点。因此,在这些系统中已经实现了多极化天线,以减小天线相关性并实现紧凑的设备。本文旨在进行非视距(NLOS)条件下室内环境中MIMO信道的混合分集(空间和极化)性能分析。它研究了元素间距对交叉极性鉴别(XPD)和同极性比率(CPR)的影响。在这方面,分析了混合MIMO系统的容量以及误码率(BER)性能,以使其与双极化以及空间分集技术进行公平的比较。仿真结果表明,混合分集在这两种系统实现方案之间都具有中等性能。此外,随着天线之间的距离增加,与双极化操作条件相比,混合分集的性能明显增强。而且,作为天线间隔的函数,空间分集系统的性能变化要比混合分集情况慢。

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