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Route or Carry: Motion-Driven Packet Forwarding in Micro Aerial Vehicle Networks

机译:路由或携带:微型飞行器网络中的运动驱动包转发

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Micro aerial vehicles (MAVs) provide data such as images and videos from an aerial perspective, with data typically transferred to the ground. To establish connectivity in larger areas, a fleet of MAVs may set up an ad-hoc wireless network. Packet forwarding in aerial networks is challenged by unstable link quality and intermittent connectivity caused by MAV movement. We show that signal obstruction by the MAV frame can be alleviated by adapting the MAV platform, even for low-priced MAVs, and the aerial link can be properly characterized by its geographical distance. Based on this link characterization and making use of GPS and inertial sensors on-board of MAVs, we design and implement a motion-driven packet forwarding algorithm. The algorithm unites location-aware end-to-end routing and delay-tolerant forwarding, extended by two predictive heuristics. Given the current location, speed, and orientation of the MAVs, future locations are estimated and used to refine packet forwarding decisions. We study the forwarding algorithm in a field measurement campaign with quadcopters connected over Wi-Fi IEEE 802.11n, complemented by simulation. Our analysis confirms that the proposed algorithm masters intermittent connectivity well, but also discloses inefficiencies of location-aware forwarding. By anticipating motion, such inefficiencies can be counteracted and the forwarding performance can be improved.
机译:微型飞行器(MAV)从空中角度提供诸如图像和视频之类的数据,这些数据通常会传输到地面。为了在更大的区域中建立连接,一组MAV可以建立一个临时无线网络。空中网络中的分组转发受到不稳定的链路质量和由MAV移动引起的间歇性连接的挑战。我们显示,即使对于低价的MAV,通过调整MAV平台也可以减轻MAV帧造成的信号阻塞,并且可以通过其地理距离适当地表征空中链路。基于这种链路表征,并利用MAV板上的GPS和惯性传感器,我们设计并实现了一种运动驱动的数据包转发算法。该算法将位置感知的端到端路由和耐延迟转发结合在一起,并通过两种预测启发式方法进行了扩展。给定MAV的当前位置,速度和方向,可以估计将来的位置并用于完善数据包转发决策。我们在通过Wi-Fi IEEE 802.11n连接四轴飞行器的现场测量活动中研究转发算法,并辅以仿真。我们的分析证实,该算法很好地掌握了间歇性连接,但同时也揭示了位置感知转发的低效率。通过预期运动,可以消除这种低效率,并可以提高转发性能。

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