论文标题
IoT数据收集无人机安装的RIS网络的能源感知设计
Energy-Aware Design of UAV-mounted RIS Networks for IoT Data Collection
论文作者
论文摘要
大规模物联网网络中的数据收集需要新颖而灵活的方法。即使在没有静态电信基础设施的偏远地区,无人驾驶汽车(UAV)也被预见是一种快速收集数据的手段。在这个方向上,无人机安装的可重构智能表面(RISS)有助于降低无人机一侧的硬件要求和信号处理的复杂性,同时提高网络的能源效率和可靠性。因此,在本文中,我们提出了使用无人机安装的RI进行数据收集的利用,并研究了此类网络中的覆盖率概率。此外,我们提出了一种基于开槽的Aloha和代码组合来处理多个传感器的通信的新型媒体访问控制协议。为了解决无人机中关键的能源问题,我们设计了一个能够考虑无人机和RIS重量的能量模型,以及环境条件和无人机速度。最后,我们通过分析平均吞吐量和每次飞行的平均数据来表征拟议的数据收集方案的性能,同时为此类网络的设计提供了有用的见解。
Data collection in massive Internet of Things networks requires novel and flexible methods. Unmanned aerial vehicles (UAVs) are foreseen as a means to collect data rapidly even in remote areas without static telecommunication infrastructure. To this direction, UAV-mounted reconfigurable intelligent surfaces (RISs) aid in reducing the hardware requirements and signal processing complexity at the UAV side, while increasing the energy efficiency and reliabilityof the network. Hence, in this paper, we propose the utilization of a UAV-mounted RIS for data collection and study the coverage probability in such networks. Additionally, we propose a novel medium access control protocol based on slotted ALOHA and Code Combining to handle the communication of multiple sensors. To account for the crucial energy issue in UAVs, we devise an energy model that considers both the UAV and the RIS weight, as well as the environmental conditions and the UAV velocity. Finally, we characterize the performance of the proposed data collection scheme by analyzing the average throughput and the average data per flight, while providing useful insights for the design of such networks.