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Proceedings ArticleDOI

An Energy efficient Load Balancing Algorithm for cluster-based wireless sensor networks

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TLDR
A new algorithm called CELBA (Centralized Energy efficient Load Balancing Algorithm) is proposed for wireless sensor networks that not only balances the load of the gateways but also energy efficient communication of the sensor nodes in their clusters.
Abstract
In a large-scale wireless sensor network, clustering sensor nodes around a few less-energy constrained gateways (also called cluster heads) has been considered as an effective means to achieve scalability and robustness of the networks However, if some gateways are overburdened with a large number of sensor nodes, they can die quickly and as a result the network life time can be over within a short period of time To prolong the lifetime of the network, therefore, it is imperative to balance the load of the gateways It is also equally important to minimize average communication energy of the sensor nodes inside their clusters In this paper, we propose a new algorithm called CELBA (Centralized Energy efficient Load Balancing Algorithm) for wireless sensor networks that not only balances the load of the gateways but also energy efficient communication of the sensor nodes in their clusters Simulation results demonstrate that the proposed algorithm is more energy efficient and load balanced than the existing algorithms

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Citations
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Journal ArticleDOI

A Survey on an Energy-Efficient and Energy-Balanced Routing Protocol for Wireless Sensor Networks.

TL;DR: An extensive survey of the different state-of-the-art energy-efficient and energy-balanced routing protocols for WSNs is presented and possible research directions in order to optimize the energy consumption in sensor networks are suggested.
Journal ArticleDOI

Approximation schemes for load balanced clustering in wireless sensor networks

TL;DR: This paper presents a load balanced clustering scheme for wireless sensor networks, and proves that the algorithm is optimal for the case in which the sensor nodes have equal load, and improves this algorithm and proposes a 1.5-approximation algorithm for the general case.
Journal ArticleDOI

An Energy-Efficient and Secure Routing Protocol for Intrusion Avoidance in IoT-Based WSN

TL;DR: This paper aims to develop an energy-efficient and secure routing protocol (ESR) for intrusion avoidance in IoT based on WSN to increase the network period and data trustworthiness and presents a light-weight solution to cope with intrusions generated by malicious nodes.
Journal ArticleDOI

Predetermined path of mobile data gathering in wireless sensor networks based on network layout

TL;DR: By strategically divisioning the area of data collection, the optimization of the ME can be elevated by derived area divisions focused on the determination of a common configuration range and the correlation with a redundant area within an identified area.
Journal ArticleDOI

HSCA: a novel harmony search based efficient clustering in heterogeneous WSNs

TL;DR: A novel harmony search based energy efficient load balanced clustering algorithm is presented and it is tested on a large sample network and it demonstrated that the proposed approach has faster convergence and gives reliable and efficient loadbalanced clustering as compared to conventional harmony search algorithm (HSA) and several other methods in the literature.
References
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Journal ArticleDOI

Wireless sensor networks: a survey

TL;DR: The concept of sensor networks which has been made viable by the convergence of micro-electro-mechanical systems technology, wireless communications and digital electronics is described.
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.
Journal ArticleDOI

HEED: a hybrid, energy-efficient, distributed clustering approach for ad hoc sensor networks

TL;DR: It is proved that, with appropriate bounds on node density and intracluster and intercluster transmission ranges, HEED can asymptotically almost surely guarantee connectivity of clustered networks.
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