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     Research Journal of Applied Sciences, Engineering and Technology


Mobility and Bandwidth Aware QoS Routing Protocol for MANET

A. Charles and R. Bensraj
Department of Electrical Engineering, Annamalai University, Annamalai Nagar, Chidhambaram, India
Research Journal of Applied Sciences, Engineering and Technology  2015  1:48-55
http://dx.doi.org/10.19026/rjaset.11.1674  |  © The Author(s) 2015
Received: January ‎19, ‎2015  |  Accepted: April ‎7, ‎2015  |  Published: September 05, 2015

Abstract

Mobile Adhoc Networks (MANET) out of the many defies it is critical to guarantee quality-of-service, because of its complex distributed system. The problem of routing is based on a predefined set of customer preferences. In this study we have proposed to develop a Mobility and Bandwidth Aware QoS Routing Protocol for MANET. Initially as a clustering process in CFSR, the neighbour discovery procedure is used. It contains a pre-handshaking strategy to help each node be aware of activities of its neighborhood before the normal transmissions. Next to this QoS routing is provided. Finally we are using bandwidth estimation technique in order to provide QoS support. The overall frame work reduces the collision with a minimized level of redundancy.

Keywords:

Clustered Fisheye State Routing (CFSR), Extended Fully Distributed Cluster-Based (EFDCB), FRIEND protocol, Mobile Adhoc Networks (MANET), Mobile Nodes (MN), QoS routing protocol,


References

  1. Barolli, A., E. Spaho, F. Xhafa, L. Barolli and M. Takizawa, 2001. Application of GA and multi-objective optimization for QoS routing in Ad-hoc networks. Proceeding of the International Conference on Network-based Information Systems, pp: 50-59.
  2. Clustered Fisheye State Routing (FSR), 2014. Retrieved from: http://en.wikipedia.org/wiki/Fisheye_State_Routing.
    Direct Link
  3. Deepalakshmi, P. and S. Radhakrishnan, 2009. QoS routing algorithm for mobile Ad Hoc networks using ACO. Proceeding of the International Conference on Control, Automation, Communication and Energy Conservation, pp: 1-6.
  4. Enneya, N., R. Elmeziane and M. Elkoutbi, 2009. A game theory approach for enhancing QoS-aware routing in mobile Ad hoc networks. Proceeding of the 1st International Conference on Networked Digital Technologies, pp: 327-333.
    CrossRef    
  5. Espes, D. and Z. Mammeri, 2009. Delay and bandwidth constrained routing with throughput optimization in TDMA- based MANETs. Proceeding of the 3rd International Conference on New Technologies, Mobility and Security, pp: 1-5.
    CrossRef    
  6. Gnanamurthy, R.K., A. Thangavelu, B. Kandasamy and K. Sankaranarayanan, 2006. Delivering quality of services for media streaming in group communication over mobile Ad Hoc networks (QASAN). Proceeding of the 1st International Conference on Industrial and Information Systems, pp: 8-11.
    CrossRef    
  7. Hanzo, L. and R. Tafazolli, 2011. QoS-aware routing and admission control in shadow-fading environments for multirate MANETs. IEEE T. Mobile Comput., 10(5): 622-637.
    CrossRef    
  8. Llewellyn, L.C., K.M. Hopkinson and S.R. Graham, 2011. Distributed fault-tolerant quality of wireless networks. IEEE T. Mobile Comput., 10(2): 175-190.
    CrossRef    
  9. Network Simulator, 1995. Retrieved from: http:///www.isi.edu/nsnam/ns.
    Direct Link
  10. Premalatha, J. and P. Balasubramanie, 2010. Enhancing quality of service in MANETs by effective routing. Proceeding of the International Conference on Wireless Communication and Sensor Computing, pp: 1-5.
    CrossRef    
  11. Senthilkumar, M. and S. Somasundaram, 2011. Energy aware multiple constraints intelligent multipath QoS routing protocol with dynamic mobility prediction for MANET. Proceeding of the International Conference on Process Automation, Control and Computing (PACC), pp: 1-8.
    CrossRef    
  12. Su, Y.S., S.L. Su and J.S. Li, 2014. Joint topology-transparent scheduling and QoS routing in Ad Hoc networks. IEEE T. Veh. Technol., 63(1): 372-389.
    CrossRef    
  13. Sun, G., F. Wu, X. Gao, G. Chen and W. Wang, 2013. Time-efficient protocols for neighbor discovery in wireless Ad Hoc networks. IEEE T. Veh. Technol., 62(6): 2780-2791.
    CrossRef    
  14. Tai, W.Y., C.E. Tan and S.P. Lau, 2010. Enhanced QoS based routing in IPv6 Ad hoc network. Proceeding of the 8th Asia-Pacific Symposium on Information and Telecommunication Technologies (APSITT, 2010), pp: 1-5.

Competing interests

The authors have no competing interests.

Open Access Policy

This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.

Copyright

The authors have no competing interests.

ISSN (Online):  2040-7467
ISSN (Print):   2040-7459
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