Unmanned Aerial Vehicles (UAVs) offer promising potential as communications node carriers, providing on-demand wireless connectivity to users. While existing literature presents various channel models, they often overlook the impact of UAV heading. This paper experimentally characterizes Air-to-Ground (A2G) and Ground-to-Air (G2A) wireless channels in obstacle-free, interference-free open environments, accounting for distance and UAV heading. We analyze the Received Signal Strength Indicator (RSSI) and TCP throughput between ground users and UAVs, covering distances between 50 m and 500 m, and considering different UAV headings. Our study offers a more accurate channel model characterization compared to deterministic models such as Friis and two-ray. Additionally, we characterize the antenna's radiation pattern based on UAV headings.
翻译:无人机(UAV)作为通信节点承载者具有巨大的潜力,为用户提供按需无线连接。然而,现有文献介绍了各种信道模型,但往往忽略了UAV航向的影响。本文在无障碍、无干扰的开放环境中实验性地表征了空地(A2G)和地空(G2A)无线通信信道,并考虑了距离和UAV航向的影响。我们分析了地面用户和UAV之间的接收信号强度指示器(RSSI)和TCP吞吐量,在50m至500m的距离范围内,考虑不同的UAV航向。我们的研究比确定性模型(如Friis和双射线)提供了更准确的信道模型特性。此外,我们根据UAV航向表征了天线的辐射模式。