Extending the Lifetime of Wireless Sensor Networks Based on an Improved Multi-objective Artificial Bees Colony Algorithm

IF 0.6 Q4 COMPUTER SCIENCE, INFORMATION SYSTEMS Journal of Communications Software and Systems Pub Date : 2022-01-01 DOI:10.24138/jcomss-2022-0055
Salima Nebti, M. Redjimi
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Abstract

— Reducing the sensors' energy expenditure to prolong the network lifespan as long as possible remains a fundamental problem in the field of wireless networks. Particularly in applications with inaccessible environments, which impose crucial constraints on sensor replacement. It is, therefore, necessary to design adaptive routing protocols, taking into account the environmental constraints and the limited energy of sensors. To have an energy-efficient routing protocol, a new cluster heads’ (CHs) selection strategy using a modified multi-objective artificial bees colony (MOABC) optimization is defined. The modified MOABC is based on the roulette wheel selection over non-dominated solutions of the repository (hyper-cubes) in which a rank is assigned to each hypercube based on its density in dominated solutions of the current iteration and then a random food source is elected by roulette from the densest hypercube. The proposed work aims to find the optimal set of CHs based on their residual energies to ensure an optimal balance between the nodes' energy consumption. The achieved results proved that the proposed MOABC-based protocol considerably outperforms recent studies and well-known energy-efficient protocols, namely: LEACH, C-LEACH, SEP, TSEP, DEEC, DDEEC, and EDEEC in terms of energy efficiency, stability, and network lifespan extension.
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基于改进多目标人工蜂群算法的无线传感器网络寿命延长
-减少传感器的能量消耗,尽可能延长网络寿命,仍然是无线网络领域的一个基本问题。特别是在难以进入的环境中,这对传感器的更换施加了关键的限制。因此,有必要在考虑环境约束和传感器能量有限的情况下设计自适应路由协议。为了实现高效节能的路由协议,定义了一种基于改进的多目标人工蜂群优化的簇头选择策略。改进的MOABC是基于对存储库(超立方体)的非主导解的轮盘赌轮盘选择,其中每个超立方体根据其在当前迭代的主导解中的密度分配一个等级,然后通过轮盘赌从密度最大的超立方体中选择一个随机食物源。提出的工作旨在根据节点的剩余能量找到最优的节点集,以确保节点的能量消耗达到最优平衡。研究结果表明,本文提出的基于moabc的协议在能效、稳定性和网络寿命延长方面明显优于当前研究和知名的节能协议LEACH、C-LEACH、SEP、TSEP、DEEC、DDEEC和EDEEC。
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来源期刊
Journal of Communications Software and Systems
Journal of Communications Software and Systems Engineering-Electrical and Electronic Engineering
CiteScore
2.00
自引率
14.30%
发文量
28
审稿时长
8 weeks
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