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Energy Efficiency Performance Improvements for Ant-Based Routing Algorithm in Wireless Sensor Networks
- Source :
- Journal of Sensors, Vol 2013 (2013)
- Publication Year :
- 2013
- Publisher :
- Hindawi Limited, 2013.
-
Abstract
- The main problem for event gathering in wireless sensor networks (WSNs) is the restricted communication range for each node. Due to the restricted communication range and high network density, event forwarding in WSNs is very challenging and requires multihop data forwarding. Currently, the energy-efficient ant based routing (EEABR) algorithm, based on the ant colony optimization (ACO) metaheuristic, is one of the state-of-the-art energy-aware routing protocols. In this paper, we propose three improvements to the EEABR algorithm to further improve its energy efficiency. The improvements to the original EEABR are based on the following: (1) a new scheme to intelligently initialize the routing tables giving priority to neighboring nodes that simultaneously could be the destination, (2) intelligent update of routing tables in case of a node or link failure, and (3) reducing the flooding ability of ants for congestion control. The energy efficiency improvements are significant particularly for dynamic routing environments. Experimental results using the RMASE simulation environment show that the proposed method increases the energy efficiency by up to 9% and 64% in converge-cast and target-tracking scenarios, respectively, over the original EEABR without incurring a significant increase in complexity. The method is also compared and found to also outperform other swarm-based routing protocols such as sensor-driven and cost-aware ant routing (SC) and Beesensor.
- Subjects :
- Dynamic Source Routing
Engineering
Static routing
Article Subject
business.industry
Distributed computing
Routing table
ComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKS
Policy-based routing
Wireless Routing Protocol
Geographic routing
Link-state routing protocol
Control and Systems Engineering
lcsh:Technology (General)
lcsh:T1-995
Destination-Sequenced Distance Vector routing
Electrical and Electronic Engineering
business
Instrumentation
Computer network
Subjects
Details
- ISSN :
- 16877268 and 1687725X
- Volume :
- 2013
- Database :
- OpenAIRE
- Journal :
- Journal of Sensors
- Accession number :
- edsair.doi.dedup.....a0a0667a7db179fe97210ac0ea82fcf0
- Full Text :
- https://doi.org/10.1155/2013/759654