A Robust Approach to TDMA Synchronization in Aerial Networks
Unmanned Aerial Vehicles (UAVs) can be a powerful tool for live (interactive) remote inspection of large-scale structures or areas of interest. Instead of manual, local, and labor-intensive inspections, we envision human operators working together with networks of semi-autonomous UAVs. The current s...
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doaj-87aecb2e25e84f6787a97d8112183b812020-11-25T01:41:37ZengMDPI AGSensors1424-82202018-12-011812449710.3390/s18124497s18124497A Robust Approach to TDMA Synchronization in Aerial NetworksLuis Ramos Pinto0Luis Almeida1Instituto de Telecomunicações, R. Dr Roberto Frias, 4200-135 Porto, PortugalInstituto de Telecomunicações, R. Dr Roberto Frias, 4200-135 Porto, PortugalUnmanned Aerial Vehicles (UAVs) can be a powerful tool for live (interactive) remote inspection of large-scale structures or areas of interest. Instead of manual, local, and labor-intensive inspections, we envision human operators working together with networks of semi-autonomous UAVs. The current state-of-the-art for low-delay high-throughput inter-vehicle networking relies on Time-Division Multiple Access (TDMA) techniques that require accurate synchronization among all network nodes. In this paper, we propose a delay-tolerant synchronization approach that converges to the correct order of the TDMA slots implemented over COTS WiFi in a fully-distributed way and without resorting to a global clock. This highly flexible solution allows building an ad-hoc aerial network based on a backbone of relaying UAVs. We show several alternatives to achieve this synchronization in a concrete aerial network and compare them in terms of slots’ overlap, throughput, and packet delivery. The results show that these alternatives lead to trade-offs in the referenced metrics. The results also provide insight into the delays caused by buffering in the protocol stack and especially in the WiFi interface.https://www.mdpi.com/1424-8220/18/12/4497multi-hopnetworksynchronizationTDMAWiFi |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Luis Ramos Pinto Luis Almeida |
spellingShingle |
Luis Ramos Pinto Luis Almeida A Robust Approach to TDMA Synchronization in Aerial Networks Sensors multi-hop network synchronization TDMA WiFi |
author_facet |
Luis Ramos Pinto Luis Almeida |
author_sort |
Luis Ramos Pinto |
title |
A Robust Approach to TDMA Synchronization in Aerial Networks |
title_short |
A Robust Approach to TDMA Synchronization in Aerial Networks |
title_full |
A Robust Approach to TDMA Synchronization in Aerial Networks |
title_fullStr |
A Robust Approach to TDMA Synchronization in Aerial Networks |
title_full_unstemmed |
A Robust Approach to TDMA Synchronization in Aerial Networks |
title_sort |
robust approach to tdma synchronization in aerial networks |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2018-12-01 |
description |
Unmanned Aerial Vehicles (UAVs) can be a powerful tool for live (interactive) remote inspection of large-scale structures or areas of interest. Instead of manual, local, and labor-intensive inspections, we envision human operators working together with networks of semi-autonomous UAVs. The current state-of-the-art for low-delay high-throughput inter-vehicle networking relies on Time-Division Multiple Access (TDMA) techniques that require accurate synchronization among all network nodes. In this paper, we propose a delay-tolerant synchronization approach that converges to the correct order of the TDMA slots implemented over COTS WiFi in a fully-distributed way and without resorting to a global clock. This highly flexible solution allows building an ad-hoc aerial network based on a backbone of relaying UAVs. We show several alternatives to achieve this synchronization in a concrete aerial network and compare them in terms of slots’ overlap, throughput, and packet delivery. The results show that these alternatives lead to trade-offs in the referenced metrics. The results also provide insight into the delays caused by buffering in the protocol stack and especially in the WiFi interface. |
topic |
multi-hop network synchronization TDMA WiFi |
url |
https://www.mdpi.com/1424-8220/18/12/4497 |
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