Link-state routing protocol for multi-channel multi-interface wireless networks

A lot of military networks maintain multiple wireless channels and exploit frequency-hopping spread spectrum on those channels for anti-jamming. One drawback of using multichannel communications is the high overhead involved in broadcast operations: a transmitter should transmit a broadcast packet to all channels that are possibly occupied by a receiver. This makes certain broadcast-intensive mechanisms, such as, link-state routing difficult to implement. Link-state routing, however is faster and robust, which makes it suitable for military applications. In this paper, we present a link-state routing protocol tailored for multichannel networks by minimizing the broadcast overheads. This is achieved by means of a special set of nodes called cluster-heads. We have implemented our protocol on a multichannel, multiinterface wireless test bed and have compared its performance with an AODV-like reactive routing protocol, which is also tailored for multichannel multiinterface networks. The measurements on our test bed show that the proposed link-state routing protocol provides transient communications in a comparable or better performance.

[1]  A. Laouiti,et al.  Optimized link state routing protocol for ad hoc networks , 2001, Proceedings. IEEE International Multi Topic Conference, 2001. IEEE INMIC 2001. Technology for the 21st Century..

[2]  Vaduvur Bharghavan,et al.  CEDAR: a core-extraction distributed ad hoc routing algorithm , 1999, 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).

[3]  David A. Maltz,et al.  Dynamic Source Routing in Ad Hoc Wireless Networks , 1994, Mobidata.

[4]  Robin Kravets,et al.  Designing routing metrics for mesh networks , 2005 .

[5]  Nitin H. Vaidya,et al.  Net-X: a multichannel multi-interface wireless mesh implementation , 2007, MOCO.

[6]  Nitin H. Vaidya,et al.  Routing and link-layer protocols for multi-channel multi-interface ad hoc wireless networks , 2006, MOCO.

[7]  P.A. Spagnolo,et al.  Comparison of Proposed Ospf Manet Extensions , 2006, MILCOM 2006 - 2006 IEEE Military Communications conference.

[8]  Jitendra Padhye,et al.  Routing in multi-radio, multi-hop wireless mesh networks , 2004, MobiCom '04.

[9]  Jitendra Padhye,et al.  Comparison of routing metrics for static multi-hop wireless networks , 2004, SIGCOMM 2004.