A Dual Channel Medium Access Control (MAC) Protocol for Underwater Acoustic Sensor Networks Based on Directional Antenna

Medium access control (MAC) protocol is an important link for achieving networks function in any wireless networks; an efficient and reliable MAC protocol is crucial for an effective underwater acoustic sensor networks (UASNs). Significant differences between UASNs and terrestrial sensor networks (T...

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Main Authors: Jianmin Yang, Gang Qiao, Qing Hu, Jiarong Zhang, Guangbin Du
Format: Article
Language:English
Published: MDPI AG 2020-05-01
Series:Symmetry
Subjects:
Online Access:https://www.mdpi.com/2073-8994/12/6/878
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spelling doaj-31be18f88f594dea9612a2dc715d4d332020-11-25T03:21:55ZengMDPI AGSymmetry2073-89942020-05-011287887810.3390/sym12060878A Dual Channel Medium Access Control (MAC) Protocol for Underwater Acoustic Sensor Networks Based on Directional AntennaJianmin Yang0Gang Qiao1Qing Hu2Jiarong Zhang3Guangbin Du4School of Marine Engineering and Technology, Sun Yat-sen University, Guangzhou 518000, ChinaAcoustic Science and Technology Laboratory, Harbin Engineer University, Harbin 150001, ChinaSchool of Marine Engineering and Technology, Sun Yat-sen University, Guangzhou 518000, ChinaSystems Engineering Research Institute, Beijing 100094, ChinaSouthern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Zhuhai 519000, ChinaMedium access control (MAC) protocol is an important link for achieving networks function in any wireless networks; an efficient and reliable MAC protocol is crucial for an effective underwater acoustic sensor networks (UASNs). Significant differences between UASNs and terrestrial sensor networks (TSNs) render the traditional MAC protocols applied on land inapplicable underwater. Existing MAC protocols for UASNs use the omnidirectional antenna, which wastes energy, restricts the network’s coverage range, and brings about unnecessary interferences in neighbor nodes. This paper proposes a dual channel MAC protocol for UASNs based on directional antenna (DADC-MAC), which increases the network coverage range, efficiently utilizes space, and reduces node interference compared to the omnidirectional antenna. The DADC-MAC protocol divides the channel into a data transmission channel and busy prompt message channel; the node uses the former to transmit the control frame and DATA package while the sending node and receiving node use the latter channel to inform the neighbor nodes of on-going communications to prevent DATA package collision. A neighbor discovery mechanism and directional network allocation vector are applied to resolve hidden terminal and deafness problems. Simulation results show that the DADC-MAC protocol could improve network throughput and reduce end-to-end delay, is efficient, performs well, and is well suited to both symmetrical and asymmetrical UASNs topology.https://www.mdpi.com/2073-8994/12/6/878underwater acoustic sensor networksmedium access controldual channeldirectional antennachannel busy prompt
collection DOAJ
language English
format Article
sources DOAJ
author Jianmin Yang
Gang Qiao
Qing Hu
Jiarong Zhang
Guangbin Du
spellingShingle Jianmin Yang
Gang Qiao
Qing Hu
Jiarong Zhang
Guangbin Du
A Dual Channel Medium Access Control (MAC) Protocol for Underwater Acoustic Sensor Networks Based on Directional Antenna
Symmetry
underwater acoustic sensor networks
medium access control
dual channel
directional antenna
channel busy prompt
author_facet Jianmin Yang
Gang Qiao
Qing Hu
Jiarong Zhang
Guangbin Du
author_sort Jianmin Yang
title A Dual Channel Medium Access Control (MAC) Protocol for Underwater Acoustic Sensor Networks Based on Directional Antenna
title_short A Dual Channel Medium Access Control (MAC) Protocol for Underwater Acoustic Sensor Networks Based on Directional Antenna
title_full A Dual Channel Medium Access Control (MAC) Protocol for Underwater Acoustic Sensor Networks Based on Directional Antenna
title_fullStr A Dual Channel Medium Access Control (MAC) Protocol for Underwater Acoustic Sensor Networks Based on Directional Antenna
title_full_unstemmed A Dual Channel Medium Access Control (MAC) Protocol for Underwater Acoustic Sensor Networks Based on Directional Antenna
title_sort dual channel medium access control (mac) protocol for underwater acoustic sensor networks based on directional antenna
publisher MDPI AG
series Symmetry
issn 2073-8994
publishDate 2020-05-01
description Medium access control (MAC) protocol is an important link for achieving networks function in any wireless networks; an efficient and reliable MAC protocol is crucial for an effective underwater acoustic sensor networks (UASNs). Significant differences between UASNs and terrestrial sensor networks (TSNs) render the traditional MAC protocols applied on land inapplicable underwater. Existing MAC protocols for UASNs use the omnidirectional antenna, which wastes energy, restricts the network’s coverage range, and brings about unnecessary interferences in neighbor nodes. This paper proposes a dual channel MAC protocol for UASNs based on directional antenna (DADC-MAC), which increases the network coverage range, efficiently utilizes space, and reduces node interference compared to the omnidirectional antenna. The DADC-MAC protocol divides the channel into a data transmission channel and busy prompt message channel; the node uses the former to transmit the control frame and DATA package while the sending node and receiving node use the latter channel to inform the neighbor nodes of on-going communications to prevent DATA package collision. A neighbor discovery mechanism and directional network allocation vector are applied to resolve hidden terminal and deafness problems. Simulation results show that the DADC-MAC protocol could improve network throughput and reduce end-to-end delay, is efficient, performs well, and is well suited to both symmetrical and asymmetrical UASNs topology.
topic underwater acoustic sensor networks
medium access control
dual channel
directional antenna
channel busy prompt
url https://www.mdpi.com/2073-8994/12/6/878
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