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Performance Evaluation of Multiuser MIMO E-SDM Systems in Time-Varying Fading Environments

机译:时变衰落环境下多用户MIMO E-SDM系统的性能评估

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摘要

In this paper, the performance of multiuser MIMO E-SDM systems in downlink transmission is evaluated in both uncorrelated and correlated time-varying fading environments. In the ideal case, using the block diagonalization scheme, inter-user interference can be completely eliminated at each user; and using the E-SDM technique for each user, optimal resource allocation can be achieved, and spatially orthogonal substreams can be obtained. Therefore, a combination of the block diagonalization scheme and the E-SDM technique applied to multiuser MIMO systems gives very good results. In realistic environments, however, due to the dynamic nature of the channel and processing delay at both the transmitter and the receiver, the channel change during the delay may cause inter-user interference even if the BD scheme is used. In addition, the change may also result in large inter-substream interference and prevent optimal resource allocation from being achieved. As a result, system performance may be degraded seriously. To overcome the problem, we propose a method of channel extrapolation to compensate for the channel change. Applying our proposed method, simulation results show that much better system performance can be obtained than the conventional case. Moreover, it also shows that the system performance in the correlated fading environments is much dependent on the antenna configuration and the angle spread from the base station to scatterers.
机译:在本文中,在不相关和相关时变衰落环境中,都评估了多用户MIMO E-SDM系统在下行链路传输中的性能。在理想情况下,使用块对角化方案,可以完全消除每个用户的用户间干扰;通过为每个用户使用E-SDM技术,可以获得最佳的资源分配,并且可以获得空间上正交的子流。因此,将块对角化方案与应用于多用户MIMO系统的E-SDM技术相结合,可获得非常好的结果。然而,在现实环境中,由于信道的动态特性以及发射机和接收机处的处理延迟,即使使用BD方案,延迟期间的信道更改也可能导致用户间干扰。另外,该变化还可能导致较大的子流间干扰,并妨碍实现最佳资源分配。结果,系统性能可能会严重下降。为了解决这个问题,我们提出了一种信道外推的方法来补偿信道的变化。应用我们提出的方法,仿真结果表明,与常规情况相比,可以获得更好的系统性能。而且,它还表明,相关衰落环境中的系统性能在很大程度上取决于天线配置以及从基站到散射体的角度扩展。

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