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首页> 外文期刊>IEEE Transactions on Signal Processing >Performance of multiantenna signaling techniques in the presence of polarization diversity
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Performance of multiantenna signaling techniques in the presence of polarization diversity

机译:极化分集下多天线信令技术的性能

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Multiple-input multiple-output (MIMO) antenna systems employ spatial multiplexing to increase spectral efficiency or transmit diversity to improve link reliability. The performance of these signaling strategies is highly dependent on MIMO channel characteristics, which, in turn, depend on antenna height and spacing and richness of scattering. In practice, large antenna spacings are often required to achieve significant multiplexing or diversity gain. The use of dual-polarized antennas (polarization diversity) is a promising cost- and space-effective alternative, where two spatially separated uni-polarized antennas are replaced by a single antenna structure employing orthogonal polarizations. This paper investigates the performance of spatial multiplexing and transmit diversity (Alamouti (see IEEE J. Select. Areas Commun., vol.16, p.1451-58, Oct. 1998) scheme) in MIMO wireless systems employing dual-polarized antennas. In particular, we derive estimates for the uncoded average symbol error rate of spatial multiplexing and transmit diversity and identify channel conditions where the use of polarization diversity yields performance improvements. We show that while improvements in terms of symbol error rate of up to an order of magnitude are possible in the case of spatial multiplexing, the presence of polarization diversity generally incurs a performance loss for transmit diversity techniques. Finally, we provide simulation results to demonstrate that our estimates closely match the actual symbol error rates.
机译:多输入多输出(MIMO)天线系统采用空间复用来提高频谱效率或发射分集来提高链路可靠性。这些信令策略的性能高度依赖于MIMO信道特性,而MIMO信道特性又取决于天线高度和间隔以及散射的丰富度。实际上,通常需要大的天线间隔以实现显着的复用或分集增益。使用双极化天线(极化分集)是一种有前途的成本和空间效益的选择,其中两个空间分离的单极化天线被采用正交极化的单个天线结构取代。本文研究了采用双极化天线的MIMO无线系统中空间复用和发射分集(Alamouti(请参阅IEEE J. Select。Areas Commun。,第16卷,第1451-58页,1998年10月))的性能。特别是,我们获得了对空间复用和传输分集的未编码平均符号错误率的估计,并确定了使用极化分集可以提高性能的信道条件。我们表明,在空间多路复用的情况下,虽然可以提高高达一个数量级的符号错误率,但极化分集的存在通常会导致发射分集技术的性能损失。最后,我们提供了仿真结果,以证明我们的估计值与实际符号错误率非常匹配。

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