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Performance Measurement of 802.11a Wireless Links from UAV to Ground Nodes with Various Antenna Orientations

机译:802.11A的性能测量来自UAV到具有各种天线方向的地点的无线链路

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We report measured performance of 802.11a wireless links from an unmanned aerial vehicle (UAV) to ground stations. In a set of field experiments, we record the received signal strength indicator (RSSI) and measure the raw link-layer throughput for various antenna orientations, communication distances and ground-station elevations. By comparing the performance of 32 simultaneous pairs of UAV and ground station configurations, we are able to conclude that, in order to achieve the highest throughput under a typical flyover UAV flight path, both the UAV and the ground station should use omni-directional dipole (as opposed to high-gain, narrow-beam) antennas positioned horizontally, with their respective antenna null pointing to a direction perpendicular to the UAV's flight path. In addition, a moderate amount of elevation of the ground stations can also improve performance significantly.
机译:我们报告了802.11A从无人机(UAV)到地面站的无线链路的测量性能。在一组现场实验中,我们记录接收的信号强度指示器(RSSI)并测量各种天线方向,通信距离和地站升高的原始链路层吞吐量。通过比较32个同时对UAV和地面站配置的性能,我们能够得出结论,为了在典型的跨无人机飞行路径下实现最高吞吐量,无人机和地面站应该使用全方位偶极子(与高增益,窄梁)天线水平定位,其各自的天线零朝垂直于UAV的飞行路径的方向。此外,地面站的中等升高也可以显着提高性能。

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