[PDF][PDF] A Novel Enhanced Energy Efficient and Secure Routing Protocol for MANET

NA Malik, M Rai - 2019 - academia.edu
NA Malik, M Rai
2019academia.edu
A MANET comprises of sensor nodes that perform as source as well as link nodes to send
the data to sink node. On the other hand, the nodes in network are restricted in computation
complication, transmission competence and limited life of the battery. Many routing protocols
are there for enhancing the network performance apart from very few focuses on security
concerns. The performance of routing along with secure protocol in MANETs have an effect
on due to untrustworthy low power sources, insecure communication, threats, and resource …
Abstract
A MANET comprises of sensor nodes that perform as source as well as link nodes to send the data to sink node. On the other hand, the nodes in network are restricted in computation complication, transmission competence and limited life of the battery. Many routing protocols are there for enhancing the network performance apart from very few focuses on security concerns. The performance of routing along with secure protocol in MANETs have an effect on due to untrustworthy low power sources, insecure communication, threats, and resource restrictions that limits an effective routing design in addition to security algorithm in MANETs. In this paper, we propose a fuzzy with trust management and Enhanced Energy Efficient Secure Routing Protocol (EEESRP) with Security using less consumption of energy. The proposed scheme comprises of securing data transmission with distribution of keys using very less amount of energy as the mobile nodes are having limited power resources. In key generation cluster head distributes the keys among nodes. This model calculates trust value of participating nodes with the help of node’s energy value. It enables end-to-end communication among nodes. Proposed algorithm is tested and evaluated on Network Simulator-2 then compared the outcomes like throughput, energy consumption, Packet Delivery Ratio (PDR), End-to-End (E2E) delay and normalized overhead with some algorithms and graphs are obtained.
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