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System-Level Performance Evaluation for 5G mmWave Cellular Network

机译:5G MMWAVE蜂窝网络的系统级性能评估

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Cellular networks with hyper-dense deployment of small cells have been identified as the performance-optimizing architecture for fifth-generation (5G) mobile systems. A thousandfold capacity increase is projected when such networks benefit from aggressive spatial multiplexing and huge bandwidth, realizable with massive antenna arrays and millimeter-wave (mmWave) spectrum, respectively. As a precursor to the 5G projections, we show in this paper that network performance (cell capacity, user throughputs and spectral efficiency) can be significantly increased by overlaying mmWave small cells on microwave (μWave) macrocells, due to the elimination of crosstier interference. This is without any increase in bandwidth or antenna configuration of legacy dense networks. Dramatic performance gains can further be achieved by employing more antenna arrays and larger bandwidth. In addition, we demonstrate that such networks are density-limited. Increasing the number of small cells per macrocell beyond the optimal cell density threshold leads to performance degradation. Adequate consideration should, therefore, be given to this limit in the design, planning and operation of future cellular networks.
机译:已经识别出具有超密集部署小单元的蜂窝网络作为第五代(5G)移动系统的性能优化架构。当这些网络受益于积极的空间复用和巨大带宽时,将分别预测千倍的容量增加,分别可实现巨大的天线阵列和毫米波(MMWAVE)光谱。作为5G投影的前体,我们在本文中示出了由于消除了串联干扰,通过覆盖Mmwave小单元来通过覆盖MMWave小单元来显着增加网络性能(电池容量,用户吞吐量和光谱效率)。这不增加遗留密度网络的带宽或天线配置。通过采用更多天线阵列和更大的带宽,可以进一步实现戏剧性的性能增益。此外,我们证明这种网络是密度有限的。增加超过最佳细胞密度阈值的每个宏小区的小细胞的数量导致性能下降。因此,应该对未来蜂窝网络的设计,规划和运营中的这种限制提供足够的考虑因素。

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