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Field Trial on Millimeter Wave Integrated Access and Backhaul

机译:毫米波综合访问与回程的现场试验

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Higher bandwidth and spatial reuse through densification of wireless cells are necessary to meet the increase of wireless traffic demand in the next decade. Millimeter wave network can fulfill both of these criteria with the availability of abundant bandwidth and higher spatial reuse through directional beamforming. However, millimeter wave network suffers from coverage hole in urban environment due to blockage because of high path loss for millimeter wave signals. Wireless backhaul allows densification of mobile networks without incurring additional fiber deployment cost. Millimeter wave band based Integrated access and backhaul (IAB) is expected to provide a low cost coverage enhancement and capacity improvement solution. This paper focuses on the system performance of IAB node deployment in terms of coverage and user throughput by field experiment using millimeter wave band. The trial results prove that coverage ratio is significant improved with deploying IAB node. Meanwhile, dynamic resource allocation, including dynamic time division multiplexing (TDM) and dynamic TDM with flexible space division multiplexing (SDM) between access and backhaul link, brings obvious user throughput gain due to better resource utilization and providing more access transmission opportunities for User Equipment (UE) in backhaul slot.
机译:在未来十年内,必须通过无线电池的致密化致密化的带宽和空间重用是必要的,以满足未来十年的无线交通需求的增加。毫米波网络可以通过定向波束成形的充分带宽和更高的空间再利用来满足这些标准。然而,由于毫米波信号的高路径损耗,毫米波网络由于阻塞而受到城市环境中的覆盖孔。无线回程允许致密化移动网络,而不会产生额外的光纤部署成本。基于毫米波频段的集成接入和回程(IAB)预计将提供低成本的覆盖增强和容量改进解决方案。本文侧重于使用毫米波频段的现场实验的覆盖率和用户吞吐量的IAB节点部署的系统性能。试验结果证明了覆盖率与部署IAB节点具有显着改进。同时,动态资源分配,包括访问和回程链路之间具有灵活的空间多路复用(SDM)的动态资源分配,包括灵活的空间多路复用(SDM),由于更好的资源利用率,并且为用户设备提供了更多的访问传输机会,因此具有显而易见的用户吞吐量增益(UE)在回程插槽中。

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