Karthika A and Parthasarathy P, Dept of CSE, Akshaya College of Engineering & Technology, Coimbatore, TamilNadu, India.
International Journal of Advanced Computing and Communication Systems
ISSN (Online) : 2347 - 9299
ISSN (Print) : 2347 - 9280
Received On :
Revised On :
Accepted On :
Published On :
Volume 04, Issue 03
Page No : 011-014
Energy consumption and security becomes primary concern in a Wireless Sensor Network(WSN). In multi-hop communications, nodes near sink become congested. Thus, the closer a sensor node to a sink, the faster its battery runs out, whereas other nodes has more energy. This leads to non uniform depletion of energy, which results in network partition due to energy holes. Hence, balancing the energy consumption of sensor nodes to prevent energy holes is a critical issue in WSNs. In delay-sensitive applications, as all sensed data must be collected within a given time constraint. In this paper, Panel-Gear is proposed, which is novel algorithm for reducing energy consumption and increasing security of WSN. GEAR is an energy- efficient routing protocol proposed for routing queries to target regions in a sensor field, In GEAR, the sensors are supposed to have localization hardware equipped. GEAR uses a recursive geographic forwarding algorithm to disseminate the packet inside the target region .The novelty of PANEL with respect to other aggregator node election protocols is that it supports asynchronous sensor network applications where the sensor readings are fetched by the base stations after some delay. In particular, motivation for design of PANEL was to support reliable and persistent data storage applications. PANEL ensures load balancing, intra- and inter-cluster routing allowing sensor to aggregator, aggregator to aggregator, base station to aggregator, and aggregator to base station communications. PANEL uses the geographical position information of the nodes to determine which of them should be the aggregators.
Panel, WSN, GEAR, packet, node,sensor.
Karthika A and Parthasarathy P, “Path Selection Strategy for Wireless Sensor Network Based on Energy Efficient Mobile Sink, ”International Journal of Advanced Computing and Communication Systems, pp. 011-014, November, 2017.
© 2017 Karthika A and Parthasarathy P. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
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