Research on the Access Method of Distributed Control Channel in WMN Based on TDMA

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The access strategy and method of control channel in WMN is an important research project. In this paper, description of access strategy and the method on distributed control channel in WMN based on TDMA are carried out, the coordination mechanism of multiple channels and allocation algorithm of controlling time slot to make the access of control channel fast and fair are proposed. Finally, the paper formulates protocol specification of control channel access, being appropriate for large-scale network, and discusses its application in the maintenance of network topology, route discovery and the establishment of QoS request.

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1932-1937

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June 2011

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© 2011 Trans Tech Publications Ltd. All Rights Reserved

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[1] G. Brar, D. M. Blough, and P. Santi, Computationally Efficient Scheduling with the Physical Interference Model for Throughput Improvement in Wireless Mesh Networks, In Proc. of ACM MOBICOM, (2006).

DOI: 10.1145/1161089.1161092

Google Scholar

[2] Topology Control for Minimizing Interference in Wireless Ad hoc and Mesh Networks, to appear in Handbook on Mobile Ad Hoc and Pervasive Communications, American Scientific Publishers.

DOI: 10.1002/0471656895.ch6

Google Scholar

[3] Topology Control for Multi-Channel Multi-Radio Wireless Mesh Networks Using Directional Antennas, submitted to IEEE Transactions on Wireless Communications.

DOI: 10.1007/s11276-010-0263-1

Google Scholar

[4] S. Wu, C. Lin, Y. Tseng, and J. Sheu, A New Multi-Channel Mac Protocol with On-Demand Channel Assignment for Multi-Hop Mobile Ad Hoc Networks, In Proc. International Symposium on Parallel Architectures, Algorithms and Networks (I-SPAN), Dallas/Richardson, Texas, USA, Dec. 2000, p.232.

DOI: 10.1109/ispan.2000.900290

Google Scholar

[5] P. Bahl, R. Chandra, and J. Dunagan, SSCH: Slotted Seeded Channel Hopping for Capacity Improvement in IEEE 802. 11 Ad Hoc Wireless Networks, In Proc. of ACM MOBICOM, (2004).

DOI: 10.1145/1023720.1023742

Google Scholar

[6] W-C Hung, K.L.E. Law, and A. Leon-Garcia, A Dynamic Multi-Channel MAC for Ad Hoc LAN, In Proc. of the 21st Biennial Symposium on Communications, Kingston, Canada, June 2002, p.31–35.

Google Scholar

[7] K. Ramachandran, E. Belding-Royer, K. Almeroth, and M. Buddhikot, Interference-Aware Channel Assignment in Multi-Radio Wireless Mesh Networks, In Proc. of IEEE INFOCOM, (2006).

DOI: 10.1109/infocom.2006.177

Google Scholar

[8] P. Kyasanur and N.H. Vaidya, Routing and Link-Layer Protocols for Multi-Channel Multi-Interface Ad Hoc Wireless Networks, ACM Mobile Computing and Communications Review (MC2R), vol. 10, no. 1, January 2006, p.31–43.

DOI: 10.1145/1119759.1119762

Google Scholar

[9] C. Zhu and M.S. Corson, QoS Routing for Mobile Ad Hoc Networks, In Proc. of IEEE INFOCOM, (2002).

Google Scholar

[10] W. Shao, V. Li, and K. Chan, A Distributed Bandwidth Reservation Algorithm for QoS Routing in TDMA-based Mobile Ad hoc Networks, In Proc. Workshop on High Performance Switching and Routing, 2005, p.317–321.

DOI: 10.1109/hpsr.2005.1503246

Google Scholar

[11] P. Djukic and S. Valaee, Link Scheduling for Minimum Delay in Spatial Re-use TDMA, In Proc. of IEEE INFOCOM, (2007).

DOI: 10.1109/infcom.2007.12

Google Scholar

[12] W-Z Wang, Y Wang, X-Y Li, W-Z Song and O. Frieder, Efficient Interference-Aware TDMA Link Scheduling for Static Wireless Networks, In Proc. of ACM MOBICOM, (2006).

DOI: 10.1145/1161089.1161119

Google Scholar

[13] L C. Pond and V. O.K. Li, A Distributed Time-Slot Assignment Protocol for Mobile Multi-Hop Broadcast Packet Radio Networks, In Proc. of IEEE MILCOM, (1989).

DOI: 10.1109/milcom.1989.103901

Google Scholar

[14] I. Chlamtac and S.S. Pinter, Distributed Nodes Organization Algorithm for Channel Access in a Multihop Dynamic Radio Network, IEEE Transactions on Computers, vol. c-36, no. 6, June 1987, p.728–737.

DOI: 10.1109/tc.1987.1676965

Google Scholar

[15] C. D. Young, USAP Multiple Access: Dynamic Resource Allocation for Mobile Multihop MultiChannel Wireless Networking, " In Proc. of IEEE MILCOM, 99, Nov. (1999).

DOI: 10.1109/milcom.1999.822686

Google Scholar

[16] A. Kanzaki, T. Uemukai, T. Hara, and S. Nishio, Dynamic TDMA Slot Assignment in Ad Hoc Network, In Proc. of 17th International Conference on Advanced Information Networking and Applications (AINA), (2003).

DOI: 10.1109/aina.2003.1192899

Google Scholar