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Cellular Multiuser Two-Way MIMO AF Relaying via Signal Space Alignment: Minimum Weighted SINR Maximization

机译:通过信号空间对齐的蜂窝多用户双向MIMO AF中继:最小加权SINR最大化

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摘要

In this paper, we consider linear MIMO transceiver design for a cellular two-way amplify-and-forward relaying system consisting of a single multiantenna base station, a single multiantenna relay station, and multiple multiantenna mobile stations (MSs). Due to the two-way transmission, the MSs could suffer from tremendous multiuser interference. We apply an interference management model exploiting signal space alignment and propose a transceiver design algorithm, which allows for alleviating the loss in spectral efficiency due to half-duplex operation and providing flexible performance optimization accounting for each user's quality of service priorities. Numerical comparisons to conventional two-way relaying schemes based on bidirectional channel inversion and spatial division multiple access-only processing show that the proposed scheme achieves superior error rate and average data rate performance.
机译:在本文中,我们考虑用于蜂窝双向双向转发中继系统的线性MIMO收发器设计,该系统包括一个多天线基站,一个多天线中继站和多个多天线移动站(MS)。由于双向传输,MS可能遭受巨大的多用户干扰。我们采用了利用信号空间对齐的干扰管理模型,并提出了一种收发器设计算法,该算法可以减轻由于半双工操作导致的频谱效率损失,并可以针对每个用户的服务质量优先级提供灵活的性能优化。与基于双向信道反转和空分多址仅访问处理的常规双向中继方案的数值比较表明,该方案具有较高的误码率和平均数据率性能。

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