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Large-scale Massive MIMO Network Evaluation Using Ray-based Deterministic Simulations

机译:基于射线的确定性模拟大规模的大规模MIMO网络评估

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Large-scale massive MIMO network deployments can provide higher spectral efficiency and better coverage for future communication systems like 5G. Due to the large number of antennas at the base station, the system achieves stable channel quality and spatially separable channels to the different users. In this paper, linear, planar, circular and cylindrical arrays are used in the evaluation of a large-scale multi-cell massive MIMO network. The system-level performance is predicted using two different kinds of channel models. First, a ray-based deterministic tool is utilized in a real North American city environment. Second, an independent and identically distributed (i.i.d.) Rayleigh fading channel model is considered, as often used in previously published massive MIMO studies. The analysis is conducted in a 16-macro-cell network with outdoor and randomly distributed users. It is shown that the array configuration has a large impact on the throughput statistics. Although the system-level performance with i.i.d. Rayleigh fading can be close to the deterministic prediction in some situations (e.g., with large linear arrays), significant differences are noticed when considering other types of arrays.
机译:大型大规模MIMO网络部署可以为未来的通信系统提供更高的光谱效率和更好的覆盖范围,如5G。由于基站的大量天线,该系统在不同的用户实现了稳定的信道质量和空间可分离的通道。在本文中,用于评估大规模多电池大量MIMO网络的线性,平面,圆形和圆柱形阵列。使用两种不同类型的信道模型来预测系统级性能。首先,在真正的北美城市环境中使用基于光线的确定性工具。其次,考虑了独立和相同分布的(I.I.D.)瑞利衰落信道模型,经常在前发表的大规模MIMO研究中使用。分析在16宏细胞网络中进行,具有户外和随机分布的用户。结果表明,阵列配置对吞吐量统计有很大影响。虽然系统级性能与i.i.d. Rayleigh衰落可以接近在某些情况下的确定性预测(例如,具有大线性阵列),在考虑其他类型的数组时,注意到了显着的差异。

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