An Efficient Coverage Greedy Packet Stateless Routing (EC-GPSR) in Authenties Based Wireless Sensor Networks
- 1 Department of ECE, Park College of Engineering and Technology, Coimbatore, India
- 2 Maharaja Institute of Technology, Coimbatore, India
Abstract
A WSN (wireless sensor network) consists of lakhs of sensor nodes with low level energy, memory management, and computation routing capability. The real time world applications of WSN in some extreme perceive environment arrange sensor nodes complex to exchange once they use up the resource. Hence, lots of researchers in this field going towards on how to design a property routing protocol with extension route procedures to safety of transmission with prolong the life span of the network. The classical hybrid protocols such as LEACH and GPSR have better performance in saving the power consumption. However, the choosing formula eliminates the change of nodes’ Route will make the nodes acting as cluster heads too many times die of route with power early expressions to the consumption of too much Power and saves the route path. In this paper, we present WSN network route extension with supporting of cloud architecture of the state-of-the-art routing techniques in WSNs. Our Proposed Research belongs overcome of GPSR (Greedy Perimeter Stateless Routing) to EC-GPSR (Efficient Coverage-GPSR), ERA (Efficient Route Autonomous) and IC-GPSR (Isolated Coverage-GPSR) with solving of Route problems due to Route extension with help of cloud to store availability of routes and improve the scalability with compare AODV.
- Samundiswary, P., Sathian, D. and Dananjayan, P. (2010) Secured Greedy Perimeter Stateless Routing for Wireless Sensor Networks. International Journal of Ad Hoc, Sensor & Ubiquitous Computing (IJASUC), 1.
- Naseer, A.R. (2013) Reputation System Based Trust-Enabled Routing for Wireless Sensor Networks. IET Wireless Sensor Systems, 1, 74-84. https://doi.org/10.5772/50736
- Khunt, N.H., Kodinariya, T.M. and Sharma, S.S. (2016) An Enhance Approach of Route Selection Technique of GPSR Using Multi-Path Mechanism over MANET. International Journal of Engineering Science and Computing, 6, 4721-4723.
- Chen, M., Wang, X.D., Leung, V.C.M. and Yuan, Y. (2006) Virtual Coordinates Based Routing in Wireless Sensor Networks. Sensor Letters, 4, 1-6. https://doi.org/10.1166/sl.2006.039
- Lee, K.C., Cheng, P.-C. and Gerla, M. (2010) GeoCross: A Geographic Routing Protocol in the Presence of Loops in Urban Scenarios. Ad Hoc Networks, 8, 474-488. https://doi.org/10.1016/j.adhoc.2009.12.005
- Granelli, F., Boato, G., Kliazovich, D. and Vernazza, G. (2011) Enhanced GPSR Routing in Multi-Hop Vehicular Communications through Movement Awareness.
- Dharani, N.V., Shylaja, B.S. and Ele, S.L. (2015) Performance Evaluation of GPSR Routing Protocol for VANETs Using Bi-Directional Coupling. International Journal of Computer Networks (IJCN), 7.
- Zhang, Y. (2009) Message-Initiated Constraint-Based Routing for Wireless Ad-Hoc Sensor Networks.
- Bhatia, B. and Sood, N. (2014) AODV Based Congestion Control Protocols: Review. International Journal of Computer Science and Information Technologies, 5, 4570-4575.
- Asgarnezhad, R. and Nematbakhsh, N. (2015) A Reliable and Energy Efficient Routing Algorithm in Wsn Using Learning Automata. Journal of Theoretical and Applied Information Technology, 82.
- Pranitha, P. and Swamy, G. (2011) A Review on Enhanced GPSR Protocol for Wireless Sensor Networks. Computer Engineering and Intelligent Systems, 2. www.iiste.org
- Tripathi, R.K. (2012) Base Station Positioning, Nodes’ Localization and Clustering Algorithms for Wireless Sensor Networks.