Routing algorithm for supporting data-differentiated service in hybrid wireless mesh networks in underground mines

Hybrid wireless mesh networks are more suitable to tunnels in underground mines because mesh clients can perform the routing functionality and provide end-user applications. Types of data transmitted among hybrid wireless mesh networks in underground mines are diverse and power supply of clients is...

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Main Authors: Haifeng Jiang, Liansheng Lu, Guangzhi Han, He Wang, Shanshan Ma, Renke Sun
Format: Article
Language:English
Published: SAGE Publishing 2018-11-01
Series:International Journal of Distributed Sensor Networks
Online Access:https://doi.org/10.1177/1550147718812024
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spelling doaj-51238ceb909845c9bf946c1c4eef9a292020-11-25T03:02:54ZengSAGE PublishingInternational Journal of Distributed Sensor Networks1550-14772018-11-011410.1177/1550147718812024Routing algorithm for supporting data-differentiated service in hybrid wireless mesh networks in underground minesHaifeng JiangLiansheng LuGuangzhi HanHe WangShanshan MaRenke SunHybrid wireless mesh networks are more suitable to tunnels in underground mines because mesh clients can perform the routing functionality and provide end-user applications. Types of data transmitted among hybrid wireless mesh networks in underground mines are diverse and power supply of clients is limited. Using virtual potential field, a routing algorithm is proposed to support data-differentiated service in hybrid wireless mesh networks. Based on network parameters, the hybrid wireless mesh networks are abstracted as potential fields. The hop count is used to build the depth potential field. The residual energy of nodes is converted into penalty factor to symbolize the used buffer spaces of nodes, which is used to construct resource potential field to support different types of data. According to the different demands of data transmission, the proportion of these two potential fields is adjusted by a regulatory factor to form a hybrid potential field. The data packets are driven to move toward the gateway in the hybrid potential field at the same time to achieve high quality of service. Simulation results demonstrate that the proposed routing algorithm has shown better performance on end-to-end delay, delivery ratio, and network lifetime, compared with similar algorithms.https://doi.org/10.1177/1550147718812024
collection DOAJ
language English
format Article
sources DOAJ
author Haifeng Jiang
Liansheng Lu
Guangzhi Han
He Wang
Shanshan Ma
Renke Sun
spellingShingle Haifeng Jiang
Liansheng Lu
Guangzhi Han
He Wang
Shanshan Ma
Renke Sun
Routing algorithm for supporting data-differentiated service in hybrid wireless mesh networks in underground mines
International Journal of Distributed Sensor Networks
author_facet Haifeng Jiang
Liansheng Lu
Guangzhi Han
He Wang
Shanshan Ma
Renke Sun
author_sort Haifeng Jiang
title Routing algorithm for supporting data-differentiated service in hybrid wireless mesh networks in underground mines
title_short Routing algorithm for supporting data-differentiated service in hybrid wireless mesh networks in underground mines
title_full Routing algorithm for supporting data-differentiated service in hybrid wireless mesh networks in underground mines
title_fullStr Routing algorithm for supporting data-differentiated service in hybrid wireless mesh networks in underground mines
title_full_unstemmed Routing algorithm for supporting data-differentiated service in hybrid wireless mesh networks in underground mines
title_sort routing algorithm for supporting data-differentiated service in hybrid wireless mesh networks in underground mines
publisher SAGE Publishing
series International Journal of Distributed Sensor Networks
issn 1550-1477
publishDate 2018-11-01
description Hybrid wireless mesh networks are more suitable to tunnels in underground mines because mesh clients can perform the routing functionality and provide end-user applications. Types of data transmitted among hybrid wireless mesh networks in underground mines are diverse and power supply of clients is limited. Using virtual potential field, a routing algorithm is proposed to support data-differentiated service in hybrid wireless mesh networks. Based on network parameters, the hybrid wireless mesh networks are abstracted as potential fields. The hop count is used to build the depth potential field. The residual energy of nodes is converted into penalty factor to symbolize the used buffer spaces of nodes, which is used to construct resource potential field to support different types of data. According to the different demands of data transmission, the proportion of these two potential fields is adjusted by a regulatory factor to form a hybrid potential field. The data packets are driven to move toward the gateway in the hybrid potential field at the same time to achieve high quality of service. Simulation results demonstrate that the proposed routing algorithm has shown better performance on end-to-end delay, delivery ratio, and network lifetime, compared with similar algorithms.
url https://doi.org/10.1177/1550147718812024
work_keys_str_mv AT haifengjiang routingalgorithmforsupportingdatadifferentiatedserviceinhybridwirelessmeshnetworksinundergroundmines
AT lianshenglu routingalgorithmforsupportingdatadifferentiatedserviceinhybridwirelessmeshnetworksinundergroundmines
AT guangzhihan routingalgorithmforsupportingdatadifferentiatedserviceinhybridwirelessmeshnetworksinundergroundmines
AT hewang routingalgorithmforsupportingdatadifferentiatedserviceinhybridwirelessmeshnetworksinundergroundmines
AT shanshanma routingalgorithmforsupportingdatadifferentiatedserviceinhybridwirelessmeshnetworksinundergroundmines
AT renkesun routingalgorithmforsupportingdatadifferentiatedserviceinhybridwirelessmeshnetworksinundergroundmines
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