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首页> 外文期刊>Journal of computer networks and communications >Exploiting Spatial and Frequency Diversity in Spatially Correlated MU-MIMO Downlink Channels
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Exploiting Spatial and Frequency Diversity in Spatially Correlated MU-MIMO Downlink Channels

机译:在空间相关的MU-MIMO下行链路信道中利用空间和频率分集

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The effect of self-interference due to the increase of spatial correlation in a MIMO channel has become one of the limiting factors towards the implementation of future network downlink transmissions. This paper aims to reduce the effect of self-interference in a downlink multiuser- (MU-) MIMO transmission by exploiting the available spatial and frequency diversity. The subcarrier allocation scheme can exploit the frequency diversity to determine the self-interference from the ESINR metric, while the spatial diversity can be exploited by introducing the partial feedback scheme, which offers knowledge of the channel condition to the base station and further reduces the effect before the allocation process takes place. The results have shown that the proposed downlink transmission scheme offers robust bit error rate (BER) performance, even when simulated in a fully correlated channel, without imposing higher feedback requirements on the base controller.
机译:由于MIMO信道中空间相关性的增加而产生的自干扰效应已成为实现未来网络下行链路传输的限制因素之一。本文旨在通过利用可用的空间和频率分集来降低下行链路多用户(MU-)MIMO传输中的自干扰影响。子载波分配方案可以利用频率分集从ESINR度量中确定自干扰,而空间分集可以通过引入部分反馈方案来利用,这为基站提供了信道条件的知识,并进一步降低了影响在分配过程之前。结果表明,即使在完全相关的信道中进行仿真时,所提出的下行链路传输方案也能提供鲁棒的误码率(BER)性能,而不会对基本控制器施加更高的反馈要求。

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