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Spectral-efficiency of uplink cellular networks with distributed base-station detection and cooperation

机译:分布式基站检测与协作的上行蜂窝网络的频谱效率

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The uplink spectral-efficiency of space-division multiple-access (SDMA) cellular systems is studied, when distributed base-station (BS) detection and distributed BS cooperation are employed. In contrast to the related works in literature, which mainly consider the linear and hexagonal Wyner models (or their extensions) with a constant factor for intercell interference (ICI), we address the impacts of radio propagation pathloss, shadowing and fast fading on the achievable spectral efficiency. In this contribution, two representative schemes are proposed for implementing distributed detection; They are the optimum multiuser detection (OMUD) and minimum mean-square error assisted successive interference cancellation (MMSE-SIC), both of which mitigate the ICI via data exchange supported by a backhaul system. Our studies and performance results show that both distributed schemes are effective in suppressing ICI, while the MMSE-SIC employs some advantages over the OMUD.
机译:当采用分布式基站(BS)检测和分布式BS协作时,研究了空分多址(SDMA)蜂窝系统的上行链路频谱效率。与文献中的相关研究相反,文献中主要考虑具有恒定小区间干扰(ICI)因子的线性和六边形Wyner模型(或其扩展),我们解决了无线电传播路径损耗,阴影和快速衰落对可实现目标的影响频谱效率。在此贡献中,提出了两种具有代表性的方案来实施分布式检测。它们是最佳的多用户检测(OMUD)和最小均方误差辅助的连续干扰消除(MMSE-SIC),两者均通过回程系统支持的数据交换来减轻ICI。我们的研究和性能结果表明,两种分布式方案均能有效抑制ICI,而MMSE-SIC则比OMUD具有一些优势。

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