Routing is a crucial component in the design of Flying Ad-Hoc Networks (FANETs). State of the art routing solutions exploit the position of Unmanned Aerial Vehicles (UAVs) and their mobility information to determine the existence of links between them, but this information is often unreliable, as the topology of FANETs can change quickly and unpredictably. In order to improve the tracking performance, the uncertainty introduced by imperfect measurements and tracking algorithms needs to be accounted for in the routing. Another important element to consider is beamforming, which can reduce interference, but requires accurate channel and position information to work. In this work, we present the Beam Aware Stochastic Multihop Routing for FANETs (BA-SMURF), a Software-Defined Networking (SDN) routing scheme that takes into account the positioning uncertainty and beamforming design to find the most reliable routes in a FANET. Our simulation results show that joint consideration of the beamforming and routing can provide a 5% throughput improvement with respect to the state of the art.
翻译:航程是飞行临时网设计中的一个关键组成部分。最先进的航道解决办法利用无人驾驶航空飞行器的位置及其移动性信息来确定它们之间是否存在联系,但这种信息往往不可靠,因为FANET的地形学可以迅速和难以预测地改变。为了改进跟踪性能,在航程中需要考虑到不完善的测量和跟踪算法带来的不确定性。另一个需要考虑的重要因素是成形,这可以减少干扰,但需要准确的信道和定位信息来工作。在这项工作中,我们介绍了FANETs(BA-SMURF)的Ba-SD-Definal联网(SDN)路由计划,该计划考虑到定位不确定性和成型设计,以便在FANET中找到最可靠的路线。我们的模拟结果显示,联合考虑波形和航程可以提供5%的流量改进。