EECOR: An Energy-Efficient Cooperative Opportunistic Routing Protocol for Underwater Acoustic Sensor Networks

Underwater acoustic sensor networks (UW-ASNs) have recently been proposed for exploring the underwater resources and gathering the scientific data from the aquatic environments. UW-ASNs are faced with different challenges, such as high propagation delay, low bandwidth, and high energy consumption. H...

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Main Authors: Md Arifur Rahman, Youngdoo Lee, Insoo Koo
Format: Article
Language:English
Published: IEEE 2017-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/7987679/
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spelling doaj-3128b9fdc4604c058580a6f17987a4412021-03-29T20:15:01ZengIEEEIEEE Access2169-35362017-01-015141191413210.1109/ACCESS.2017.27302337987679EECOR: An Energy-Efficient Cooperative Opportunistic Routing Protocol for Underwater Acoustic Sensor NetworksMd Arifur Rahman0https://orcid.org/0000-0003-3861-9290Youngdoo Lee1Insoo Koo2https://orcid.org/0000-0001-7476-8782School of Electrical Engineering, University of Ulsan, Ulsan, South KoreaSchool of Electrical Engineering, University of Ulsan, Ulsan, South KoreaSchool of Electrical Engineering, University of Ulsan, Ulsan, South KoreaUnderwater acoustic sensor networks (UW-ASNs) have recently been proposed for exploring the underwater resources and gathering the scientific data from the aquatic environments. UW-ASNs are faced with different challenges, such as high propagation delay, low bandwidth, and high energy consumption. However, the most notable challenge is perhaps how to efficiently forward the packets to the surface sink by considering the energy constrained sensor devices. The opportunistic routing concept may provide an effective solution for the UW-ASNs by the cooperation of the relay nodes to forward the packets to the surface sink. In this paper, the energy consumption problem is addressed and an energy-efficient cooperative opportunistic routing (EECOR) protocol is proposed to forward the packets toward the surface sink. In the EECOR protocol, a forwarding relay set is firstly determined by the source node based on the local information of the forwarder and then, a fuzzy logic-based relay selection scheme is applied to select the best relay based on considering the energy consumption ratio and the packet delivery probability of the forwarder. In the UW-ASNs, most of the energy is wasted due to the collisions amongst sensor nodes during the packet transmission. To alleviate the packet collisions problem, we have designed a holding timer for each of the forwarder to schedule the packets transmission toward the surface sink. We have performed our extensive simulations of the EECOR protocol on the Aqua-sim platform and compared with existing routing protocols in terms of average packet delivery ratio, average end-to-end delay, average energy consumption, and average network lifetime.https://ieeexplore.ieee.org/document/7987679/Energy consumption ratioforwarding relay setfuzzy logicholding timerpacket delivery probabilityopportunistic routing
collection DOAJ
language English
format Article
sources DOAJ
author Md Arifur Rahman
Youngdoo Lee
Insoo Koo
spellingShingle Md Arifur Rahman
Youngdoo Lee
Insoo Koo
EECOR: An Energy-Efficient Cooperative Opportunistic Routing Protocol for Underwater Acoustic Sensor Networks
IEEE Access
Energy consumption ratio
forwarding relay set
fuzzy logic
holding timer
packet delivery probability
opportunistic routing
author_facet Md Arifur Rahman
Youngdoo Lee
Insoo Koo
author_sort Md Arifur Rahman
title EECOR: An Energy-Efficient Cooperative Opportunistic Routing Protocol for Underwater Acoustic Sensor Networks
title_short EECOR: An Energy-Efficient Cooperative Opportunistic Routing Protocol for Underwater Acoustic Sensor Networks
title_full EECOR: An Energy-Efficient Cooperative Opportunistic Routing Protocol for Underwater Acoustic Sensor Networks
title_fullStr EECOR: An Energy-Efficient Cooperative Opportunistic Routing Protocol for Underwater Acoustic Sensor Networks
title_full_unstemmed EECOR: An Energy-Efficient Cooperative Opportunistic Routing Protocol for Underwater Acoustic Sensor Networks
title_sort eecor: an energy-efficient cooperative opportunistic routing protocol for underwater acoustic sensor networks
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2017-01-01
description Underwater acoustic sensor networks (UW-ASNs) have recently been proposed for exploring the underwater resources and gathering the scientific data from the aquatic environments. UW-ASNs are faced with different challenges, such as high propagation delay, low bandwidth, and high energy consumption. However, the most notable challenge is perhaps how to efficiently forward the packets to the surface sink by considering the energy constrained sensor devices. The opportunistic routing concept may provide an effective solution for the UW-ASNs by the cooperation of the relay nodes to forward the packets to the surface sink. In this paper, the energy consumption problem is addressed and an energy-efficient cooperative opportunistic routing (EECOR) protocol is proposed to forward the packets toward the surface sink. In the EECOR protocol, a forwarding relay set is firstly determined by the source node based on the local information of the forwarder and then, a fuzzy logic-based relay selection scheme is applied to select the best relay based on considering the energy consumption ratio and the packet delivery probability of the forwarder. In the UW-ASNs, most of the energy is wasted due to the collisions amongst sensor nodes during the packet transmission. To alleviate the packet collisions problem, we have designed a holding timer for each of the forwarder to schedule the packets transmission toward the surface sink. We have performed our extensive simulations of the EECOR protocol on the Aqua-sim platform and compared with existing routing protocols in terms of average packet delivery ratio, average end-to-end delay, average energy consumption, and average network lifetime.
topic Energy consumption ratio
forwarding relay set
fuzzy logic
holding timer
packet delivery probability
opportunistic routing
url https://ieeexplore.ieee.org/document/7987679/
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