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Efficient Local Map Search Algorithms for the Placement of Flying Relays

机译:用于飞行接力器的高效本地地图搜索算法

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This paper studies the optimal unmanned aerial vehicle (UAV) placement problem for wireless networking. The UAV operates as a flying wireless relay to provide coverage extension for a base station (BS) and deliver capacity boost to a user shadowed by obstacles. While existing methods rely on statistical models for potential blockage of a direct propagation link, we propose an approach capable of leveraging local terrain information to offer performance guarantees. The proposed method allows to strike the best trade-off between minimizing propagation distances to ground terminals and discovering good propagation conditions. The algorithm only requires several propagation parameters, but it is capable to avoid deep propagation shadows and is proven to find the globally optimal UAV position. Only a local exploration over the target area is required, and the maximum length of search trajectory is linear to the geographical scale. Hence, it lends itself to online search. Significant throughput gains are found when compared to other positioning approaches based on statistical propagation models.
机译:本文研究了无线网络的最优无人机放置问题。 UAV作为飞行的无线中继器运行,为基站(BS)提供覆盖范围扩展,并为被障碍遮挡的用户提供容量提升。尽管现有方法依赖于统计模型来直接阻塞直接传播链路,但我们提出了一种能够利用本地地形信息来提供性能保证的方法。所提出的方法允许在最小化到地面终端的传播距离与发现良好传播条件之间达成最佳折衷。该算法仅需要几个传播参数,但是它能够避免深层传播阴影,并被证明能够找到全球最佳的无人机位置。只需要在目标区域上进行局部勘探,并且搜索轨迹的最大长度与地理范围成线性关系。因此,它适合在线搜索。与基于统计传播模型的其他定位方法相比,发现吞吐量显着提高。

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