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MIMO Relaying UAVs Operating in Public Safety Scenarios

机译:MIMO中继无人机在公共安全场景中运行

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摘要

Methods to implement communication in natural and humanmade disasters have been widely discussed in the scientific community. Scientists believe that unmanned aerial vehicles (UAVs) relays will play a critical role in 5G public safety communications (PSC) due to their technical superiority. They have several significant advantages: a high degree of mobility, flexibility, exceptional line of sight, and real-time adaptative planning. For instance, cell edge coverage could be extended using relay UAVs. This paper summarizes the sidelink evolution in the 3GPP standardization associated with the usage of the device to device (D2D) techniques that use long term evolution (LTE) communication systems, potential extensions for 5G, and a study on the impact of circular mobility on relay UAVs using the software network simulator 3 (NS3). In this simulation, the transmitted packet percentage was evaluated where the speed of the UAV for users was changed. This paper also examines the multi-input multi-output (MIMO) communication applied to drones and proposes a new trajectory to assist users experiencing unfortunate circumstances. The overall communication is highly dependent on the drone speed and the use of MIMO and suitable antennas may influence overall transmission between users and the UAVs relay. When the UAVs relaying speed was configured at 108 km/h the total transmission rate was reduced to 55% in the group with 6 users allocated to each drone.
机译:在科学界广泛讨论了自然和人工制造灾害中沟通的方法。科学家认为,由于其技术优势,无人驾驶飞行器(无人机)继电器将在5G公共安全通信(PSC)中发挥关键作用。它们具有几个显着的优势:高度的移动性,灵活性,卓越的视线以及实时适应性规划。例如,可以使用继电器UAV扩展单元格边缘覆盖范围。本文总结了与使用长期演进(LTE)通信系统的设备(D2D)技术,5G潜在延伸的装置(D2D)技术相关联的3GPP标准化中的Sidelink演变,以及5G的潜在延伸,以及对继电器循环移动性的影响使用软件网络模拟器3(NS3)的无人机。在此模拟中,评估传输的数据包百分比,其中UAV用于用户的速度已更改。本文还研究了应用于无人机的多输入多输出(MIMO)通信,并提出了一种新的轨迹,以帮助遇到不幸情况的用户。整体通信高度依赖于无人驾驶速度,并且使用MIMO和合适的天线可能影响用户和无人机继电器之间的整体传输。当UVS中继速度配置为108 km / h时,总传输速率降低到组中的55%,其中6个用户分配给每个无人机。

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