Priority Based QoS-Aware Medium Access Control Protocol for Mobile Ad-Hoc Networks
Chapter
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Abstract
In Ad hoc network is a network with group of nodes communicates each other without specific central server support. A wide range of research is carrying out in the field of Ad hoc networks. Routing is one of the major point to concentrate on the research, however, collisions among the nodes also creates a major problem. Hence it is required to create efficient channel allocation mechanisms for Ad hoc networks in MAC. In this paper, we propose a new priority based QoS design for the Mobile Ad hoc Networks (MANETs) to achieve the better performance in terms of efficient bandwidth utilization, less collision rate with prioritized data transmission among the nodes.
Keywords
MANETs MAC QoS Ad hoc networksReferences
- 1.Lin, C.R., Liu, J.S.: QoS routing in ad hoc wireless networks. IEEE J. Sel. Areas Commun. 17(8), 1426–1438 (1999)CrossRefGoogle Scholar
- 2.Royer, E.M., Perkins, C.E.: Multicast operation of the ad-hoc on-demand distance vector routing protocol. In Proceedings of the 5th Annual ACM/IEEE International Conference on Mobile Computing and Networking, pp. 207–218 (1999)Google Scholar
- 3.Johnson, D.B., Maltz, D.A., Broch, J.: DSR: the dynamic source routing protocol for multi-hop wireless ad hoc networks. Ad hoc Netw. 5, 139–172 (2001)Google Scholar
- 4.Song, J.H., Wong, V.W., Leung, V.C.: Efficient on-demand routing for mobile ad hoc wireless access networks. IEEE J. Sel. Areas Commun. 7, 1374–1383 (2004)CrossRefGoogle Scholar
- 5.Chakrabarti, S., Mishra, A.: QoS issues in ad hoc wireless networks. IEEE Commun. Mag. 39(2), 142–148 (2001)CrossRefGoogle Scholar
- 6.Sivakumar, R., Sinha, P., Bharghavan, V.: CEDAR: a core-extraction distributed ad hoc routing algorithm. IEEE J. Sel. Areas Commun. 17(8), 1454–1465 (1999)CrossRefGoogle Scholar
- 7.Layuan, L., Chunlin, L.: A hierarchical QoS multicast routing protocol for mobile ad-hoc networks. Chin. J. Electron. 15(4), 573–577 (2006)Google Scholar
- 8.Barolli, L., Koyama, A., Shiratori, N.: A QoS routing method for ad-hoc networks based on genetic algorithm. In: 14th International Workshop on Database and Expert Systems Applications, Proceedings, pp. 175–179. IEEE (2003)Google Scholar
- 9.Cansever, D.H., Michelson, A.M., Levesque, A.H.: Quality of service support in mobile ad-hoc IP networks. In: MILCOM. IEEE Military Communications. Conference Proceedings (Cat. No. 99CH36341), vol. 1, pp. 30–34. IEEE (1999)Google Scholar
- 10.IEEE 802.11 Working Group: Part 11: wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) specifications: higher-speed physical layer in the 5 GHz band. IEEE Std 802.11 (1999)Google Scholar
- 11.Joe, I., Batsell, S.G.: Reservation csma/ca for multimedia traffic over mobile ad-hoc networks. In: 2000 IEEE International Conference on Communications. ICC 2000. Global Convergence through Communications. Conference Record, vol. 3, pp. 1714–1718. IEEE (2000)Google Scholar
- 12.Muthiah, V.N., Wong, W.C.: A speech-optimised multiple access scheme for a mobile ad hoc network. In: Proceedings of the 1st ACM International Symposium on Mobile Ad Hoc Networking & Computing, pp. 127–128. IEEE Press (2000)Google Scholar
- 13.Ahn, C.W., Kang, C.G., Cho, Y.Z.: Soft reservation multiple access with priority assignment (SRMA/PA): a novel MAC protocol for QoS-guaranteed integrated services in mobile ad-hoc networks. In: Vehicular Technology Conference Fall 2000. IEEE VTS Fall VTC2000. 52nd Vehicular Technology Conference (Cat. No. 00CH37152), vol. 2, pp. 942–947. IEEE (2000)Google Scholar
- 14.Chlamtac, I., Farago, A., Myers, A.D., Syrotiuk, V.R., Zaruba, G.: Adapt: a dynamically self-adjusting media access control protocol for ad hoc-networks. In: Seamless Interconnection for Universal Services. Global Telecommunications Conference. GLOBECOM’99 (Cat. No. 99CH37042), vol. 1, pp. 11–15. IEEE (1999)Google Scholar
- 15.Veeraraghavan, M., Cocker, N., Moors, T.: Support of voice services in IEEE 802.11 wireless LANs. In: Proceedings IEEE INFOCOM 2001. Conference on Computer Communications. Twentieth Annual Joint Conference of the IEEE Computer and Communications Society (Cat. No. 01CH37213), vol. 1, pp. 488–497. IEEE (2001)Google Scholar
- 16.Yeh, J.Y., Chen, C.: Support of multimedia services with the IEEE 802-11 MAC protocol. In: 2002 IEEE International Conference on Communications. Conference Proceedings. ICC 2002 (Cat. No. 02CH37333), vol. 1, 600–604. IEEE (2002)Google Scholar
- 17.Joa-Ng, M., Lu, I.T.: Spread spectrum medium access protocol with collision avoidance in mobile ad-hoc wireless network. In: IEEE INFOCOM’99. Conference on Computer Communications. Proceedings. Eighteenth Annual Joint Conference of the IEEE Computer and Communications Societies. The Future is Now (Cat. No. 99CH36320), vol. 2, pp. 776–783. IEEE (1999)Google Scholar
- 18.Cai, Z., Lu, M.: SNDR: a new medium access control for multi-channel ad hoc networks. In: VTC 2000-Spring. 2000 IEEE 51st Vehicular Technology Conference Proceedings (Cat. No. 00CH37026), vol. 2, pp. 966–971. IEEE (2000)Google Scholar
- 19.Ramesh, G.P., Aravind, C.V., Rajparthiban, R., Soysa, N.: Body area network through wireless technology. Int. J. Comput. Sci. Eng. Commun. 2(1), 129–134 (2014)Google Scholar
- 20.Ramesh, G.P.: Performance analysis of traffic with optical broker for load balancing and multicasting in software defined data center networkingGoogle Scholar
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