Since spectrum below 6 GHz bands does not suffice to meet the high bandwidth requirements of 5G use cases, 5G networks expand their operation to mmWave bands with multi-GHz of available spectrum. However, operation at mmWave bands raises two challenges: high penetration loss and susceptibility to objects blocking the line-of-sight. As a remedy, transmitters point their antennas to their receivers using beamforming to contain the signal in the direction of the intended receiver. To avoid loss of connectivity due to blockers or other factors such as rain, users can be connected to multiple base stations (BS). While these two features, beamforming and multi-connectivity, can mitigate the challenges of mmWave bands, it is not trivial to find the optimal user association which can maintain the minimum rate requirements of the users. In this paper, we first formulate a throughput-maximizing user association scheme considering beamforming and multi-connectivity, and investigate the behavior of the optimal scheme to devise a simple, yet efficient heuristic that does not require global network information. Our proposal, dubbed beam-align, which only uses local information at a BS, performs close to the optimal in terms of per-user capacity and user satisfaction levels and has only polynomial complexity. Our numerical analysis shows that beam-align outperforms the frequently-used association schemes based on SNR. To investigate the performance of beam-align also under various challenging settings, we consider three scenarios: presence of blockers, different levels of rain intensity, and presence of clustered users. From simulations, we observe that beam-align is robust against different conditions, as it maintains a stable performance under the studied scenarios.
翻译:由于6千兆赫波段以下的频谱不足以满足5G使用案例的高带宽要求, 5G网络将其运行扩大到有多个频谱的毫米波段, 多频频谱的多频段。 但是, 毫米波段的运行带来了两个挑战: 高渗透率损失, 阻碍视觉线的物体易感性。 作为补救措施, 发射机将天线指向接收器, 使用光谱显示预定接收器方向的信号; 为了避免阻力或其他因素( 如雨水)导致连通性损失, 用户可以与多个基站( BS)连接。 虽然这两个功能, 以闪烁和多连通性来缓解毫米波段的挑战, 但找到能维持用户最低速要求的最佳用户关联性联系点并非微不足道。 在本文中, 发射者们首先设计一个透力- 匹配性连接机制, 设计一个简单、 但高效的超链接性能, 不需要全球网络信息。 我们的提议, 设置的频谱和多频谱波段的设置, 也只是根据我们最强的用户的运行方式, 进行最接近的运行状态分析。