Instantly Decodable RaptorQ Intersessions in Vehicular Adhoc Networks

Vehicular networks that deal with sharing of information among vehicles are gaining popularity among the automobile industry as well as the researchers. These networks are prevalent under the umbrella of Intelligent Transportation Systems (ITS) and deal with data that belongs to either the emergency...

Full description

Bibliographic Details
Main Authors: Vineeth Nandhini, Guruprasad H. S.
Format: Article
Language:English
Published: Sciendo 2020-04-01
Series:Transport and Telecommunication
Subjects:
Online Access:https://doi.org/10.2478/ttj-2020-0011
id doaj-0c5ecb5a30384143972c035840756f41
record_format Article
spelling doaj-0c5ecb5a30384143972c035840756f412021-09-05T21:24:16ZengSciendoTransport and Telecommunication1407-61792020-04-0121213414810.2478/ttj-2020-0011ttj-2020-0011Instantly Decodable RaptorQ Intersessions in Vehicular Adhoc NetworksVineeth Nandhini0Guruprasad H. S.1Department of Computer Science and Engineering, B.M.S. College of Engineering, Bengaluru, IndiaDepartment of Information Science and Engineering, B.M.S. College of Engineering, Bengaluru, IndiaVehicular networks that deal with sharing of information among vehicles are gaining popularity among the automobile industry as well as the researchers. These networks are prevalent under the umbrella of Intelligent Transportation Systems (ITS) and deal with data that belongs to either the emergency category or the entertaining category. In case of emergency services, it is clear that - earlier the reception of information, lesser the commotion. The objective of this work thus has been the reduction of the end to end delay when video files are exchanged among vehicles during intersessions. The set objective is accomplished through the design and development of the technique “Instantly Decodable RaptorQ Inter-Sessions” (IDRQIS) for Vehicular Adhoc Networks and the results obtained show that this outperforms the existing popular techniques – the Network Coding and RaptorQ when applied independently to the same environment. This technique can also be applied to the upcoming unmanned vehicles.https://doi.org/10.2478/ttj-2020-0011vehicular adhoc networksnetwork codingraptorqend to end delayinter-session network codinginstantly decodable network coding
collection DOAJ
language English
format Article
sources DOAJ
author Vineeth Nandhini
Guruprasad H. S.
spellingShingle Vineeth Nandhini
Guruprasad H. S.
Instantly Decodable RaptorQ Intersessions in Vehicular Adhoc Networks
Transport and Telecommunication
vehicular adhoc networks
network coding
raptorq
end to end delay
inter-session network coding
instantly decodable network coding
author_facet Vineeth Nandhini
Guruprasad H. S.
author_sort Vineeth Nandhini
title Instantly Decodable RaptorQ Intersessions in Vehicular Adhoc Networks
title_short Instantly Decodable RaptorQ Intersessions in Vehicular Adhoc Networks
title_full Instantly Decodable RaptorQ Intersessions in Vehicular Adhoc Networks
title_fullStr Instantly Decodable RaptorQ Intersessions in Vehicular Adhoc Networks
title_full_unstemmed Instantly Decodable RaptorQ Intersessions in Vehicular Adhoc Networks
title_sort instantly decodable raptorq intersessions in vehicular adhoc networks
publisher Sciendo
series Transport and Telecommunication
issn 1407-6179
publishDate 2020-04-01
description Vehicular networks that deal with sharing of information among vehicles are gaining popularity among the automobile industry as well as the researchers. These networks are prevalent under the umbrella of Intelligent Transportation Systems (ITS) and deal with data that belongs to either the emergency category or the entertaining category. In case of emergency services, it is clear that - earlier the reception of information, lesser the commotion. The objective of this work thus has been the reduction of the end to end delay when video files are exchanged among vehicles during intersessions. The set objective is accomplished through the design and development of the technique “Instantly Decodable RaptorQ Inter-Sessions” (IDRQIS) for Vehicular Adhoc Networks and the results obtained show that this outperforms the existing popular techniques – the Network Coding and RaptorQ when applied independently to the same environment. This technique can also be applied to the upcoming unmanned vehicles.
topic vehicular adhoc networks
network coding
raptorq
end to end delay
inter-session network coding
instantly decodable network coding
url https://doi.org/10.2478/ttj-2020-0011
work_keys_str_mv AT vineethnandhini instantlydecodableraptorqintersessionsinvehicularadhocnetworks
AT guruprasadhs instantlydecodableraptorqintersessionsinvehicularadhocnetworks
_version_ 1717780552088551424