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Multi-user transmitter preprocessing assisted uplink multi-cell multiple-input multiple-output system with base station cooperation over frequency-selective channels

机译:在频率选择信道上具有基站协作的多用户发射机预处理辅助上行链路多小区多输入多输出系统

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摘要

The performance of cellular uplink multiple-input multiple-output systems, where co-channel interference (CCI) at the base stations (BSs) is a major performance impairment, is investigated in this correspondence principally from a multi-user transmitter preprocessing (MUTP) perspective over correlated frequency-selective channels. Transmitter preprocessing at the mobile station is formulated by singular value decomposition (SVD) of only the individual user's channel state information (CSI) while post-processing exploits all the users' CSI using BS cooperation. Our simulations show that this approach completely removes CCI and also outperforms classical zero-forcing multi-user detection, which has about the same detection complexity. Further, the results show that our system, coupled with the optimal 'water-filling' strategy for power allocation, results in higher capacity than the maximum signal-to-noise ratio strategy. Furthermore, SVD-based MUTP outperforms dirty paper coding and Tomlinson-Harashima precoding in terms of achievable symbol error rate.
机译:主要根据多用户发射机预处理(MUTP)来研究蜂窝上行链路多输入多输出系统的性能,其中基站(BS)的同信道干扰(CCI)是主要的性能损害。相关频率选择频道的透视图。移动站的发射机预处理由仅单个用户的信道状态信息(CSI)的奇异值分解(SVD)来制定,而后处理则通过BS合作利用所有用户的CSI。我们的仿真表明,这种方法完全消除了CCI,并且优于传统的零强制多用户检测,后者的检测复杂度几乎相同。此外,结果表明,与最大信噪比策略相比,我们的系统与最佳的“注水”功率分配策略相结合,可实现更高的容量。此外,基于SVD的MUTP在可实现的符号错误率方面优于脏纸编码和Tomlinson-Harashima预编码。

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