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Codebook based beamforming and multiuser scheduling scheme for mmWave outdoor cellular systems in the 28, 38 and 60GHz bands

机译:针对28、38和60GHz频段mmWave户外蜂窝系统的基于密码本的波束成形和多用户调度方案

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In this paper a 3D ray tracing tool is developed for mmWave outdoor environments. Coverage analysis and system performance is performed for a small cell system at 60GHz. Peak throughputs beyond 3Gbps and cell edge throughputs in excess of 500Mbps are demonstrated at 98% of the mobile test locations. Analogue codebook based beamforming is applied. The analysis of the statistical angular spread at the mobiles is shown to be clustered; leading to many users selecting the similar analogue beamforming code which results is high levels of co-channel interference. It is often assumed that the use of analogue beamforming implies a single beam pattern pointing in a specific direction to support a single user. In this case users that cannot be spatially separated must be scheduled in different time slots. However, due to the clustered aspect of the users' angle spreads, those with the same beam code can still be scheduled in the same time slot using different frequency channels via a single RF chain. The paper analyses a scheduling scheme based on this concept. The same scheduling scheme is applied to systems operating at 28, 38 and 60GHz where different numbers of frequency channels are available. Different user densities and street scenarios are studied. The 60GHz scheme make use of 4 frequency channels and is shown to double the system throughput compared to operation at 28GHz band using a single frequency channel. Finally, the optimal number of RF chains required at the base station is analysed. This is shown to be a critical design issue for mmWave cellular systems.
机译:本文针对mmWave室外环境开发了3D射线追踪工具。在60GHz的小型蜂窝系统上进行覆盖分析和系统性能。在98%的移动测试位置上都显示出超过3Gbps的峰值吞吐量和超过500Mbps的小区边缘吞吐量。应用基于模拟码本的波束成形。移动站的统计角展度分析显示为聚类;导致许多用户选择相似的模拟波束成形代码,从而导致高水平的同频干扰。通常假定使用模拟波束成形意味着指向特定方向的单个波束图,以支持单个用户。在这种情况下,不能在空间上分开的用户必须安排在不同的时隙中。但是,由于用户角度扩展的群集方面,具有相同波束代码的用户仍可以通过单个RF链使用不同的频道在同一时隙中进行调度。本文分析了基于此概念的调度方案。相同的调度方案适用于在28、38和60GHz上运行的系统,在这些系统上可以使用不同数量的频道。研究了不同的用户密度和街道场景。 60GHz方案使用4个频道,与使用单个频道在28GHz频段上运行相比,显示出系统吞吐量翻了一番。最后,分析了基站所需的最佳射频链数量。对于mmWave蜂窝系统,这被证明是一个关键的设计问题。

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