Abstract

In this research an efficient data gathering scheme is presented using mobile sink as data collector with Clustering as sensor organizer in a randomly organized sensors in sensing field for wireless sensor network. The scheme not only extends the network lifetime through clustering process but also improves the data gathering mechanism through efficient and simplified mobile sink movement scheme. The cluster heads selection is based on both energy and data weight, which gathering all the data from the nodes within a cluster and then delivers it to the sink. The single mobile sink which visits the cluster heads as per defined path gathers data periodically. The scheme is organized through “Mobile Sink based Data Gathering Protocol (MSDGP)” which combines single message energy efficient clustering and data gathering process. For performance evaluation, the protocol is extensively simulated for different performance metrics, namely Residual energy consumption, Number of dead nodes during variable number of rounds and Network lifetime. The results proves that MSDGP is successful in achieving the defined objectives of energy efficiency and is capable of extending the network lifetime by increasing the number of rounds. Therefore, proposed protocol is more suitable for scenarios where sensor nodes generate variable amount of data.

Highlights

  • The current increase in the demand for usage of multimedia applications and their data in the field of Wireless Senor Network (WSN) anticipate an efficient infrastructure [1] for data gathering & delivery mechanism as well as energy efficiency over clustered topology

  • This paper presents a fixed mobility based reactive protocol named “Mobile Sink based Data Gathering Protocol (MSDGP)”

  • The results show the MSDGP incurs low energy consumption with less dead nodes over a period of time, extending network lifetime

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Summary

Introduction

The current increase in the demand for usage of multimedia applications and their data in the field of Wireless Senor Network (WSN) anticipate an efficient infrastructure [1] for data gathering & delivery mechanism as well as energy efficiency over clustered topology. Such energy efficient infrastructure can be achieved by reducing the number of hops for communications [2], [3]. In reactive approach, the sensed data is collected directly from the sensing nodes by the mobile sink

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