Self-adaptive routing protocols for integrating cellular networks, WLANs, and MANETs: Research Articles

  • Authors:
  • Dave Cavalcanti;Carlos Cordeiro;Anup Kumar;Dharma P. Agrawal

  • Affiliations:
  • Department of ECECS, OBR Center for Distributed and Mobile Computing, University of Cincinnati, Cincinnati, OH, U.S.A.;Philips Research USA, Wireless Communications and Networking Department, Briarcliff Manor, NY 10510, U.S.A.;Department of Computer Engineering and Computer Science, University of Louisville, Louisville, KY, U.S.A.;Department of ECECS, OBR Center for Distributed and Mobile Computing, University of Cincinnati, Cincinnati, OH, U.S.A.

  • Venue:
  • Wireless Communications & Mobile Computing
  • Year:
  • 2007

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Abstract

A growing need to have ubiquitous connectivity has motivated our research to provide continuous connection between various wireless platforms such as cellular networks, wireless local area networks (WLANs), and mobile ad hoc networks (MANETs). In this paper, we consider integration at the routing layer and propose two adaptable routing protocols (IRP-RD and IRP-PD) that exploit topology information stored at the fixed network components (cellular base stations and WLAN access points) for the route discovery and maintenance processes. Our proposed protocols can provide connectivity to the cellular network and/or WLAN hotspots through multihop routing, while differ in the gateway discovery approach used. In IRP-RD, multihop routes to gateways to the cellular network or WLAN hot spots are discovered on demand, while in IRP-PD out of coverage users proactively maintain routes to the gateways. Furthermore, proposed protocols can be used in any heterogeneous scenario, combining a cellular network and WLANs operating in infrastructure or ad hoc (MANET) mode. We provide simulation results that demonstrate the effectiveness of the proposed integrated routing protocols and show the advantages and drawbacks of each gateway discovery approach in different heterogeneous scenarios. Copyright © 2006 John Wiley & Sons, Ltd.