By Song Guo, Jaime Lloret Mauri, Pietro Manzoni, Stefan Ruehrup
This publication constitutes the refereed lawsuits of the thirteenth foreign convention on Ad-hoc, cellular and instant Networks, ADHOC-NOW 2014, held in Benidorm, Spain, in June 2014. The 33 revised complete papers offered have been conscientiously reviewed and chosen from seventy eight submissions. The papers deal with such different issues as routing, mobile networks, MAC and actual layer, cellular advert hoc, sensor and robotic networks, localization and defense, vehicular ad-hoc networks.
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Additional info for Ad-hoc, Mobile, and Wireless Networks: 13th International Conference, ADHOC-NOW 2014, Benidorm, Spain, June 22-27, 2014 Proceedings
The simulation stops when the mobile node arrives at the end of the chain. The Packet Delivery Ratio (PDR) is the ratio between the number of packets received by the destination over the number of packets sent by the source. Fig. 3(a) shows the PDR when using diﬀerent metrics (Hop Count, LD, ETX, ETT, ETX ANT and ETT ANT) and varying the speed of the mobile node, and without fading (σ 2 = 0). The PDR with ETX ANT is 100% for all speeds. It empirically proves that nodes mobility is perfectly managed for this scenario.
When additive metrics are considered, the shortest-path is the one for which the sum of the metrics of its links is minimal. Metrics are generally not speciﬁcally deﬁned to manage mobility but there are a few exceptions. Some metrics try to reﬂect the mobility of the nodes, for instance the average number of link breaks , or the Link Duration  (LD) that corresponds to the time where two nodes are within the transmission range of each other. These metrics aim at capturing the nodes mobility, and favor stable routes.
6. PLR for the scenario using LTE and Wi-Fi devices OLSR % Loss Ratio 100% HTR MULTIPATH HTR 80% 69% 63% 67% 60% 40% 20% 18% 20% 1% 4% 5% 1% 0% 300 600 1000 UDP Traffic (Kbps) Fig. 7. 5 End-to-End Average Delay Figures 8 and 9 show the results of end-to-end average delay. In Fig. 2% when compared with the HTR at 300, 600 and 1000 Kbps, respectively. In Fig. 2% respectively when compared with OLSR and single-path HTR. 26 J. Lima et al. 38 2 0 300 600 UDP Traffic (Kbps) 1000 Fig. 8. 29 0 300 600 UDP Traffic (Kbps) 1000 Fig.
Ad-hoc, Mobile, and Wireless Networks: 13th International Conference, ADHOC-NOW 2014, Benidorm, Spain, June 22-27, 2014 Proceedings by Song Guo, Jaime Lloret Mauri, Pietro Manzoni, Stefan Ruehrup