Bandwidth Efficient Hybrid Synchronization for Wireless Sensor Network

Mantri Dnyaneshwar, Neeli R. Prasad, Ramjee Prasad

Research output: Contribution to book/anthology/report/conference proceedingArticle in proceedingResearchpeer-review

3 Citations (Scopus)

Abstract

Data collection and transmission are the fundamental operations of Wireless Sensor Networks (WSNs). A key challenge in effective data collection and transmission is to schedule and synchronize the activities of the nodes with the global clock. This paper proposes the Bandwidth Efficient Hybrid Synchronization Data Aggregation Algorithm (BESDA) using spanning tree mechanism (SPT). It uses static sink and mobile nodes in the network. BESDA considers the synchronization of a local clock of node with global clock of the network. In the initial stage algorithm established the hierarchical structure in the network and then perform the pair-wise synchronization. With the mobility of node, the structure frequently changes causing an increase in energy consumption. To mitigate the problem BESDA aggregate data with the notion of a global timescale throughout the network and schedule based time-division multiple accesses (TDMA) techniques as MAC layer protocol. It reduces the collision of packets. Simulation results show that BESDA is energy efficient, with increased throughput, and has less delay as compared with state-of-the-art.
Original languageEnglish
Title of host publicationInternational Conference on Advances in Computing, Communications and Informatics (ICACCI), 2015
Number of pages5
Place of PublicationKochi, India
PublisherIEEE Press
Publication date10 Aug 2015
Pages2108 - 2113
ISBN (Print)978-1-4799-8790-0
DOIs
Publication statusPublished - 10 Aug 2015
Event2015 International Conference on Advances in Computing, Communications and Informatics (ICACCI) - Kochi, India
Duration: 10 Aug 201513 Aug 2015

Conference

Conference2015 International Conference on Advances in Computing, Communications and Informatics (ICACCI)
Country/TerritoryIndia
CityKochi
Period10/08/201513/08/2015
SeriesInternational Conference on Advances in Computing, Communications and Informatics (ICACCI)

Keywords

  • Aggregation; Delay; Energy; Scheduling; Synchronization;

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