Dynamic Routing for Flying Ad Hoc Networks

Динамическая маршрутизация для летающих самоорганизующихся сетей
Stefano Rosati, Karol Kruzelecki, Gregoire Heitz, Dario Floreano, Bixio Rimoldi
2015-03-27

Dynamic network topologyFlying ad hoc networksOptimized link-state routingPredictive OLSRUnmanned aerial vehicles
This paper reports experimental results on self-organizing wireless networks carried by small flying robots. Flying ad hoc networks (FANETs) composed of small unmanned aerial vehicles (UAVs) are flexible, inexpensive, and fast to deploy. This makes them a very attractive technology for many civilian and military applications. Due to the high mobility of the nodes, maintaining a communication link between the UAVs is a challenging task. The topology of these networks is more dynamic than that of typical mobile ad hoc networks (MANETs) and of typical vehicle ad hoc networks. As a consequence, the existing routing protocols designed for MANETs partly fail in tracking network topology changes. In this paper, we compare two different routing algorithms for ad hoc networks: optimized link-state routing (OLSR) and predictive OLSR (P-OLSR). The latter is an OLSR extension that we designed for FANETs; it takes advantage of the Global Positioning System (GPS) information available on board. To the best of our knowledge, P-OLSR is currently the only FANET-specific routing technique that has an available Linux implementation. We present results obtained by both media-access-control (MAC) layer emulations and real-world experiments. In the experiments, we used a testbed composed of two autonomous fixed-wing UAVs and a node on the ground. Our experiments evaluate the link performance and the communication range, as well as the routing performance. Our emulation and experimental results show that P-OLSR significantly outperforms OLSR in routing in the presence of frequent network topology changes.
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Both emulation and experimental results show that P-OLSR significantly outperforms OLSR when network topology changes frequently.
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Experiments assess wireless link performance, communication range, and routing behavior in a flying ad hoc network testbed.
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FANET topology changes more rapidly than conventional MANET and vehicular ad hoc networks, causing standard MANET routing protocols to lose track of connectivity.
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P-OLSR is identified as the only FANET-specific routing technique known to the authors with an available Linux implementation.
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Predictive OLSR (P-OLSR) extends OLSR for FANETs by exploiting GPS information available on UAVs.
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The study evaluates OLSR and P-OLSR using MAC-layer emulations and real-world experiments with two autonomous fixed-wing UAVs and a ground node.

Flying ad hoc networks (FANETs) composed of small unmanned aerial vehicles (UAVs)

Routing performance and communication-link behavior under frequent network-topology changes, comparing OLSR with predictive OLSR (P-OLSR)

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2015-03-27
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Authors
Stefano Rosati
Karol Kruzelecki
Gregoire Heitz
Dario Floreano
Bixio Rimoldi
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