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Adaptive Gossip Based Protocol for Energy Efficient Mobile Adhoc Network


Affiliations
1 Department of Electronics and Communication Engineering, Saranathan College of Engineering, India
     

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In Gossip Sleep Protocol, network performance is enhanced based on energy resource. But energy conservation is achieved with the reduced throughput. In this paper, it has been proposed a new Protocol for Mobile Ad hoc Network to achieve reliability with energy conservation. Based on the probability (p) values, the value of sleep nodes is fixed initially. The probability value can be adaptively adjusted by Remote Activated Switch during the transmission process. The adaptiveness of gossiping probability is determined by the Packet Delivery Ratio. For performance comparison, we have taken Routing overhead, Packet Delivery Ratio, Number of dropped packets and Energy consumption with the increasing number of forwarding nodes. We used UDP based traffic models to analyze the performance of this protocol. We analyzed TCP based traffic models for average end to end delay. We have used the NS-2 simulator.

Keywords

MANET Routing Protocol, Delivery Ratio, Energy Consumption, Reliability.
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  • Adaptive Gossip Based Protocol for Energy Efficient Mobile Adhoc Network

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Authors

S. Rajeswari
Department of Electronics and Communication Engineering, Saranathan College of Engineering, India
Y. Venkataramani
Department of Electronics and Communication Engineering, Saranathan College of Engineering, India

Abstract


In Gossip Sleep Protocol, network performance is enhanced based on energy resource. But energy conservation is achieved with the reduced throughput. In this paper, it has been proposed a new Protocol for Mobile Ad hoc Network to achieve reliability with energy conservation. Based on the probability (p) values, the value of sleep nodes is fixed initially. The probability value can be adaptively adjusted by Remote Activated Switch during the transmission process. The adaptiveness of gossiping probability is determined by the Packet Delivery Ratio. For performance comparison, we have taken Routing overhead, Packet Delivery Ratio, Number of dropped packets and Energy consumption with the increasing number of forwarding nodes. We used UDP based traffic models to analyze the performance of this protocol. We analyzed TCP based traffic models for average end to end delay. We have used the NS-2 simulator.

Keywords


MANET Routing Protocol, Delivery Ratio, Energy Consumption, Reliability.