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Multi-RAU pilots for ROF enabled distributed antenna systems

机译:支持ROF的分布式天线系统的多RAU导频

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Future cellular systems require an aggressive frequency reuse in order to provide the expected data rates. For these systems, interference is a major issue to be addressed by the physical layer. Radio over fiber enabled distributed antenna systems can provide a competitive solution to mitigate interference. In this architecture, multiple non collocated remote antenna units (RAU) are transparently connected to a single central unit which performs coordination and joint processing. In downlink context, multi-RAU channel estimation is a key feature which allows the mobile station to combat interference using joint detection. However, pilot patterns in current cellular standards are designed for single cell scenarios and are not adapted to the DAS context. We propose here a generic capacity analysis framework to assess the impact of multi-RAU channel estimation on the link performance. This framework is then applied to highlight the enhancement provided by a proposed modification of LTE pilot patterns suitable to the DAS topology. We show that pilot coordination between neighbouring RAUs combined with interference cancellation on the terminal side provides a substantial gain to the downlink user throughput.
机译:未来的蜂窝系统需要积极的频率复用,以提供预期的数据速率。对于这些系统,干扰是物理层要解决的主要问题。启用光纤无线电的分布式天线系统可以提供竞争性的解决方案来减轻干扰。在这种架构中,多个非并置的远程天线单元(RAU)透明地连接到执行协调和联合处理的单个中央单元。在下行链路上下文中,多RAU信道估计是关键特征,它允许移动站使用联合检测来对抗干扰。但是,当前蜂窝标准中的导频模式是为单蜂窝场景设计的,不适合DAS上下文。我们在这里提出一个通用的容量分析框架,以评估多RAU信道估计对链路性能的影响。然后将该框架应用于强调由适用于DAS拓扑的LTE导频模式的建议修改提供的增强。我们显示,相邻RAU之间的导频协调与终端侧的干扰消除相结合,为下行链路用户吞吐量带来了可观的收益。

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