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Journal ArticleDOI

A particle swarm optimization based energy efficient cluster head selection algorithm for wireless sensor networks

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TLDR
An energy efficient cluster head selection algorithm which is based on particle swarm optimization (PSO) called PSO-ECHS is proposed with an efficient scheme of particle encoding and fitness function and the results are compared with some existing algorithms to demonstrate the superiority of the proposed algorithm.
Abstract
Clustering has been proven to be one of the most efficient techniques for saving energy of wireless sensor networks (WSNs). However, in a hierarchical cluster based WSN, cluster heads (CHs) consume more energy due to extra overload for receiving and aggregating the data from their member sensor nodes and transmitting the aggregated data to the base station. Therefore, the proper selection of CHs plays vital role to conserve the energy of sensor nodes for prolonging the lifetime of WSNs. In this paper, we propose an energy efficient cluster head selection algorithm which is based on particle swarm optimization (PSO) called PSO-ECHS. The algorithm is developed with an efficient scheme of particle encoding and fitness function. For the energy efficiency of the proposed PSO approach, we consider various parameters such as intra-cluster distance, sink distance and residual energy of sensor nodes. We also present cluster formation in which non-cluster head sensor nodes join their CHs based on derived weight function. The algorithm is tested extensively on various scenarios of WSNs, varying number of sensor nodes and the CHs. The results are compared with some existing algorithms to demonstrate the superiority of the proposed algorithm.

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Citations
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Dynamic and Optimized Routing Scheme based on Fuzzy with Trustable Transmission in Wireless Sensor Networks

TL;DR: This work proposes a Dynamic and Optimized Routing Scheme with Secure Transmission in WSN which maximizes end-to-end connectivity in the network and minimizes faults at link or/and node level.
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Software-Defined Wireless Sensor Network: A Comprehensive Survey

TL;DR: In this article , the authors investigate the state-of-the-art of SDWSNs and introduce the reader to its research domains, issues, and open challenges, including network management, energy efficiency, controller implementation, placement, and security.
Journal ArticleDOI

Learning Automata Based Harmony Search Routing Algorithm for Wireless Sensor Networks

TL;DR: In this article , a Harmony Search Algorithm (HSA) based energy efficient routing scheme for finding better route from each sensor node to base station is proposed, where Learning Automate is used in routing process to find better neighborhood during establishment of forwarding paths.
Journal ArticleDOI

A Cluster-Based Routing Protocol for WSN Based on Mahalanobis Distance and AODV Protocol

TL;DR: The mahalanobis distance based cluster head selection is proposed to solve the issues related to the energy constraint and ad hoc on-demand distance vector routing protocol is used to find the optimal path between the source to base station via cluster heads.
References
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Proceedings ArticleDOI

Particle swarm optimization

TL;DR: A concept for the optimization of nonlinear functions using particle swarm methodology is introduced, and the evolution of several paradigms is outlined, and an implementation of one of the paradigm is discussed.
Journal ArticleDOI

A survey on sensor networks

TL;DR: The current state of the art of sensor networks is captured in this article, where solutions are discussed under their related protocol stack layer sections.
Proceedings ArticleDOI

Energy-efficient communication protocol for wireless microsensor networks

TL;DR: The Low-Energy Adaptive Clustering Hierarchy (LEACH) as mentioned in this paper is a clustering-based protocol that utilizes randomized rotation of local cluster based station (cluster-heads) to evenly distribute the energy load among the sensors in the network.

Energy-efficient communication protocols for wireless microsensor networks

TL;DR: LEACH (Low-Energy Adaptive Clustering Hierarchy), a clustering-based protocol that utilizes randomized rotation of local cluster based station (cluster-heads) to evenly distribute the energy load among the sensors in the network, is proposed.
Journal ArticleDOI

An application-specific protocol architecture for wireless microsensor networks

TL;DR: This work develops and analyzes low-energy adaptive clustering hierarchy (LEACH), a protocol architecture for microsensor networks that combines the ideas of energy-efficient cluster-based routing and media access together with application-specific data aggregation to achieve good performance in terms of system lifetime, latency, and application-perceived quality.
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