This paper investigates the throughput performance issue of the relay-assisted mmWave backhaul network. The maximum traffic demand of small-cell base stations (BSs) and the maximum throughput at the macro-cell BS have been found in a tree-style backhaul network through linear programming under different network settings, which concern both the number of radio chains available on BSs and the interference relationship between logical links in the backhaul network. A novel interference model for the relay-assisted mmWave backhaul network in the dense urban environment is proposed, which demonstrates the limited interference footprint of mmWave directional communications. Moreover, a scheduling algorithm is developed to find the optimal scheduling for tree-style mmWave backhaul networks. Extensive numerical analysis and simulations are conducted to show and validate the network throughput performance and the scheduling algorithm.
翻译:本文调查了中继辅助毫米Wave回航网络的吞吐性能问题。小细胞基站的最大交通需求和大型细胞BS的最大吞吐量是通过不同网络设置下的线性编程在树型回航网络中找到的,这些编程涉及BS上可用的无线电链数以及回航网络中逻辑联系之间的干扰关系。提出了在密集的城市环境中中中中继辅助毫米Wave回航网络的新式干扰模型,这表明毫米Wave方向通信的干扰足迹有限。此外,还开发了一种排程算法,以找到树型型毫米Wave回航网络的最佳时间安排。还进行了广泛的数字分析和模拟,以显示和验证网络的吞吐性能和排流算法。