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MUTP assisted uplink multi-cell MIMO system over frequency-selective channels

机译:频率选择信道上的MUTP辅助上行链路多小区MIMO系统

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摘要

In this correspondence, we present the performance of multi-user transmitter preprocessing (MUTP) assisted multiple-input multiple-output (MIMO) system, aided by space time block code (STBC) over correlated and uncorrelated frequency-selective fading channels, for uplink (UL) communication for a multi-cell scenario with base station (BS) cooperation. The transmitter preprocessing (TP) is invoked by singular value decomposition (SVD) which exploits the channel state information (CSI) of all the users at the base station and only the individual user's CSI at the mobile station (MS). Specifically, in this correspondence, we investigate the effects of two types of delay spread distributions pertaining to Long Term Evolution (LTE) pedestrian and typical urban on MUTP assisted MIMO system. In a multi-cell setting, co-channel interference (CCI) can severely degrade the system performance and further, frequency-selectivity of the channels can result in irreducible bit error rate (BER). It is demonstrated through simulation that, MUTP completely removes CCI and also outperforms classical zero-forcing multiuser detection (ZF-MUD).
机译:在此对应关系中,我们介绍了多用户发射机预处理(MUTP)辅助的多输入多输出(MIMO)系统的性能,在相关和不相关的频率选择性衰落信道上,借助空时分组码(STBC),为上行链路提供了性能与基站(BS)合作进行多小区方案的(UL)通信。发射机预处理(TP)由奇异值分解(SVD)调用,奇异值分解(SVD)利用基站所有用户的信道状态信息(CSI)和移动站(MS)仅单个用户的CSI。具体而言,在此对应关系中,我们研究了有关长期演进(LTE)行人和典型城市的两种延迟扩展分布对MUTP辅助MIMO系统的影响。在多小区设置中,同信道干扰(CCI)会严重降低系统性能,此外,信道的频率选择性可能导致无法降低的误码率(BER)。通过仿真表明,MUTP完全消除了CCI,并且优于传统的零强制多用户检测(ZF-MUD)。

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