4G-LTE监控架构下信道变化下无人机视频流容量评估

Muhammad Naveed, S. Qazi, B. A. Khawaja, Muhammad Mustaqim
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引用次数: 6

摘要

没有人能否认技术在生活各个领域的重要性。最新的技术趋势确保了前所未有的更好的监控。带有附加摄像头的无人机也被称为无人驾驶飞行器(uav),是用于监视行动的例子之一。这些安装摄像机的间谍有能力捕捉监测区内目标地区的实时视频,并将捕获的视频流式传输到行政机构观察所有活动的地点。这种设置提供了在需要时及时采取迅速行动的平台。为了提高无人机在监视框架中的效率,了解无人机视频流容量受到影响的情况是非常必要的。在本文中,我们提出了一种基于无人机的4G-LTE网络监控架构,并试图探索传输信道的变化如何影响无人机的视频流容量。为此,我们利用物理层属性参考信号接收功率(RSRP)来测量无人机无线链路的信道强度。这种跨层信息有助于提升用于监视目的的上层应用程序的性能。对于仿真,我们选择了NS-3,这是研究界最值得信赖的网络模拟器。仿真结果表明,信道的变化与无人机的发射能力有直接关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of video streaming capacity of UAVs with respect to channel variation in 4G-LTE Surveillance Architecture
Nobody can deny the importance of technology in every sphere of life. The latest trends in technology ensure better surveillance which could not be possible ever before. Drones with attached cameras also known as Unmanned Aerial Vehicles (UAVs) are one of the example used in surveillance operations. These camera mounted spies have the ability to capture real-time video of targeted areas in the monitored zone and stream the captured video to the location where all activities are observed by the administrative body. This setup provides the platform of taking prompt action in time if required. To enhance the efficiency of UAVs in a surveillance framework, it is very essential to understand the circumstances where the video-streaming capacity of UAVs are affected. In this paper, we propose a UAV-based surveillance architecture over 4G-LTE Network and we try to explore the fact that how variation in transmitting channel effects the video streaming capacity of UAVs. For this purpose, we take advantage of the physical layer attribute Reference Signal Receive Power (RSRP) which is used to measure the channel strength of wireless link at UAVs. This cross-layer information is helpful in upgrading the performance of the upper layer application used for surveillance purposes. For simulation, we have selected NS-3 which is the most trusted network simulator in the research community. Simulation results prove that variation in the channel has a direct link with the transmitting capacity of UAVs.
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