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Reseach Article

QoS Aware Power Efficient Multicast Routing Protocol (QoS-PEMRP) with Varying Mobility Speed for Mobile Ad Hoc Networks

by S. Kannan, A. Rajaram
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 60 - Number 18
Year of Publication: 2012
Authors: S. Kannan, A. Rajaram
10.5120/9792-4375

S. Kannan, A. Rajaram . QoS Aware Power Efficient Multicast Routing Protocol (QoS-PEMRP) with Varying Mobility Speed for Mobile Ad Hoc Networks. International Journal of Computer Applications. 60, 18 ( December 2012), 15-19. DOI=10.5120/9792-4375

@article{ 10.5120/9792-4375,
author = { S. Kannan, A. Rajaram },
title = { QoS Aware Power Efficient Multicast Routing Protocol (QoS-PEMRP) with Varying Mobility Speed for Mobile Ad Hoc Networks },
journal = { International Journal of Computer Applications },
issue_date = { December 2012 },
volume = { 60 },
number = { 18 },
month = { December },
year = { 2012 },
issn = { 0975-8887 },
pages = { 15-19 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume60/number18/9792-4375/ },
doi = { 10.5120/9792-4375 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T21:07:21.687130+05:30
%A S. Kannan
%A A. Rajaram
%T QoS Aware Power Efficient Multicast Routing Protocol (QoS-PEMRP) with Varying Mobility Speed for Mobile Ad Hoc Networks
%J International Journal of Computer Applications
%@ 0975-8887
%V 60
%N 18
%P 15-19
%D 2012
%I Foundation of Computer Science (FCS), NY, USA
Abstract

Power efficient multicast routing is one of the key issues in the field of mobile ad hoc networks. Multicasting is a term which refers to delivering data packets to a group of mobile nodes from an intended source. Quality of Service enlarges the support level of predictable performance for network systems. This research work focuses on design and development strategy of QoS aware power efficient multicast routing protocol which best suits for wireless nodes moving around the network with varying mobility speed. The QoS metrics such as average group delivery ratio, average power consumption and average delay are taken into account for measuring the performance of the proposed protocol QoS-PEMRP. Extensive simulation results are carried out through NS2 simulator. From the simulation results it is shown that the proposed QoS-PEMRP outperforms On-Demand Multicast Routing Protocol (ODMRP) routing protocol by reduced delay and increased packet delivery ratio along with decreased power consumption.

References
  1. B. Tavli and W. Heinzelman, "MH-TRACE: Multi Hop Time Reservation Using Adaptive Control for Energy Efficiency," IEEE J. Selected Areas Comm. , vol. 22, no. 5, pp. 942-953, June 2004.
  2. E. Astier, A. Hafid, and A. Benslimane, "Energy and Mobility Aware Clustering Technique for Multicast Routing Protocols in Wireless Ad Hoc Networks," Proc. IEEE Wireless Comm. and Networking Conf. , pp. 1-6, 2009.
  3. W. Liang, R. Brent, Y. Xu, and Q. Wang, "Minimum-Energy Allto- All Multicasting in Wireless Ad Hoc Networks," IEEE Trans. Wireless Comm. , vol. 8, no. 11, pp. 5490-5499, Nov. 2009.
  4. T. Mukherjee, G. Varsamopoulos, and S. K. S. Gupta, "Self Managing Energy-Efficient Multicast Support in MANETs under End-to-End Reliability Constraints," Computer Networks, vol. 53, pp. 1603-1627, 2009.
  5. S. Guo and O. W. W. Yang, "Energy-Aware Multicasting in Wireless Ad Hoc Networks: A Survey and Discussion," Computer Comm. , vol. 30, pp. 2129-2148, 2007.
  6. B. Tavli and W. Heinzelman, "QoS and Energy Efficiency in Network-Wide Broadcasting: A MAC Layer Perspective," Computer Comm. , vol. 30, pp. 3705-3720, 2007.
  7. B. Tavli and W. Heinzelman, "Energy and Spatial Reuse Efficient Network Wide Real-Time Data Broadcasting in Mobile Ad Hoc Networking," IEEE Trans. Mobile Computing, vol. 5, no. 10, pp. 1297-1312, Oct. 2006.
  8. H. Moustafa and H. Labiod, "A Performance Comparison of Multicast Routing Protocols in Ad Hoc Networks," Proc. IEEE Personal, Indoor and Mobile Radio Conf. , pp. 497-501, 2003.
  9. Network Simulator (NS), http://www. isi. edu/nsnam/ns, 2010.
  10. S. J. Lee, W. Su, J. Hsu, M. Gerla, and R. Bagrodia, "A Performance Comparison of Ad Hoc Wireless Multicast Protocols," Proc. IEEE Conf. Computer Comm. , pp. 565-574, 2000.
  11. C. S. R. Murthy and B. S. Manoj, Ad Hoc Wireless Networks: Architectures and Protocols. Prentice Hall, 2004.
  12. J. Janssen, D. D. Vleeschauwer, G. H. Petit, R. Windey, and J. M. Leroy, "Delay Bounds for Voice over IP Calls Transported over Satellite Access Links," Mobile Networks and Applications, vol. 7, pp. 79-89, 2002.
  13. B. Tavli and W. Heinzelman, Mobile Ad Hoc Networks: Energy- Efficient Real-Time Group Communications. Springer, 2006.
  14. C. W. Wu and Y. C. Tay, "AMRIS: A Multicast Protocol for Ad Hoc Wireless Networks," Proc. IEEE Military Comm. Conf. , vol. 1, pp. 25-29, 1999.
  15. S. J. Lee, W. Su, and M. Gerla, "On-Demand Multicast Routing Protocol in Multihop Wireless Mobile Networks," Mobile Networks and Applications, vol. 7, pp. 441-453, 2002.
  16. V. Kawadia and P. R. Kumar, "A Cautionary Perspective on Cross- Layer Design," IEEE Wireless Comm. , vol. 12, no. 1, pp. 3-11, Feb. 2005.
  17. J. G. Jetcheva and D. B. Johnson, "Adaptive Demand-Driven Multicast Routing in Multi-Hop Wireless Ad Hoc Networks," Proc. ACM Int'l Symp. Mobile Ad Hoc Networking and Computing, pp. 33-44, 2001.
  18. S. Athanassopoulos, I. Caragiannis, C. Kaklamanis, and P. Kanellopoulos, "Experimental Comparison of Algorithms for Energy-Efficient Multicasting in Ad Hoc Networks," Proc. Int'l Conf. Ad-Hoc, Mobile, and Wireless Networks, pp. 183-196, 2004.
  19. W. Liang, "Approximate Minimum-Energy Multicasting in Wireless Ad Hoc Networks," IEEE Trans. Mobile Computing, vol. 5, no. 4, pp. 377-387, Apr. 2006.
  20. B. Tavli and W. Heinzelman, "TRACE: Time Reservation Using Adaptive Control for Energy Efficiency," IEEE J. Selected Areas Comm. , vol. 21, no. 10, pp. 1506-1515, Dec. 2003.
  21. W. Ye and J. Heidemann, "Medium Access Control in Wireless Sensor Networks," Technical Report ISI-TR-580, Information Sciences Inst. , Univ. of Southern California, 2003.
  22. J. -P. Ebert, S. Aier, G. Kofahl, A. Becker, B. Burns, and A. Wolisz, "Measurement and Simulation of the Energy Consumption of an WLAN Interface," Telecomm. Network Group Technical Report TKN-02-010, Technical Univ. of Berlin, 2002.
  23. B. Tavli and W. Heinzelman, "MC-TRACE: Multicasting through Time Reservation Using Adaptive Control for Energy Efficiency," Proc. IEEE Military Comm. Conf. , pp. 2076-2081, 2005.
  24. M. Conti, G. Maselli, G. Turi, and S. Giordano, "Cross-Layering in Mobile Ad Hoc Network Design," Computer, vol. 37, no. 2, pp. 48- 51, Feb. 2004.
  25. M. Van Der Schaar and S. Shankar, "Cross-Layer Wireless Multimedia Transmission: Challenges, Principles and New Paradigms," IEEE Wireless Comm. , vol. 12, no. 4, pp. 50-58, Aug. 2005.
  26. V. Srivastava and M. Motani, "Cross-Layer Design: A Survey and the Road Ahead," IEEE Comm. Magazine, vol. 43, no. 12, pp. 112- 119, Dec. 2005.
  27. M. Gerla, Y. -Z. Lee, J. -S. Park, and Y. Yi, "On Demand Multicast Routing with Unidirectional Links," Proc. IEEE Wireless Comm. and Networking Conf. , pp. 2162-2167, 2005.
  28. T. Numanoglu, B. Tavli, and W. Heinzelman, "Energy Efficiency and Error Resilience in Coordinated and Non-Coordinated Medium Access Control Protocols," Computer Comm. , vol. 29, pp. 3493-3506, 2006.
  29. L. Junhai, Y. Danxia, X. Liu, and F. Mingyu, "A Survey of Multicast Routing Protocols for Mobile Ad-Hoc Networks," IEEE Comm. Surveys and Tutorials, vol. 11, no. 1, pp. 78-91, First Quarter 2009.
  30. C. Papageorgiou, P. Kokkinos, and E. Varvarigos, "Energy- Efficient Multicasting in Wireless Networks with Fixed Node Transmission Energy," Proc. ACM Int'l Conf. Comm. and Mobile Computing, pp. 958-962, 2009.
Index Terms

Computer Science
Information Sciences

Keywords

QoS QoS-PEMRP Mobile Ad Hoc Networks