New Radio (NR) supports operations at high-frequency bands (e.g., millimeter-wave frequencies) by using narrow beam based directional transmissions to compensate high propagation losses at such frequencies. Due to the limited spatial coverage with each beam, the broadcast transmission of paging in NR is performed using beam sweeping, which takes multiple time slots. Thus, the paging procedure used in NR would substantially increase the downlink resource overhead of the network with directional transmissions. Such overhead would further increase as we move higher in the frequency bands, such as terahertz bands, which is being viewed as one of the potential candidates for future generation networks. Therefore, the NR based paging solution is infeasible for supporting highly directional systems. In this paper, we propose a novel minimal feedback enabled paging mechanism, which instead of using all the beams for paging transmissions, only activates sub-set of beams having one or more UEs under the coverage. UE presence indications are implemented to identify the correct set of beams to be activated. Our analytical analysis and simulations show that the proposed solution significantly reduces the downlink paging overhead compared to the NR based solution (e.g., more than 80% gain for a system supporting 64 number of beams at a UE density of 200 UEs per paging occasion) while incurring minimal energy cost at the UE side.
翻译:新电台(NR)支持高频波段(例如,毫米波浪频率)的运行,使用以窄波束为基础的定向传输来补偿这种频率的高度传播损失。由于每个波束的空间覆盖面有限,NR中传动的广播传输使用光束扫瞄,需要多时空。因此,NR采用的传动程序将大大增加网络资源管理中带有方向传输的下链路。当我们移动频率波段(例如千兆赫波段)中较高时,这种间接费用将进一步增加,因为我们移动频率波段(例如,千兆赫波段)被视为未来生成网络的潜在候选对象之一。因此,基于NR的传动响应解决方案对于支持高度定向系统的不可行。在本文中,我们提出了一个新的最小反馈启用机制,而不是使用所有光束进行传输,而仅启动在覆盖范围内有一个或多个UEU的子波段子设置。UE的存在指示将用来确定要激活的侧波段的正确设置。我们的分析分析和模拟显示,在80个频率上,比RUE的分辨率的频率密度将大大降低。在80个频率上,而以RU的频率为递增。