Using hybrid selection schemes to support QoS when providing multihop wireless Internet access to mobile ad hoc networks

The quality of service (QoS) of wireless Internet access that could be provided to multihop wireless networks, so-called mobile ad hoc networks (MANETs), is highly dependent on the quality of the design of the intermediate facility that will integrate MANET and the Internet. This facility is equipped with a hybrid mechanism being able to fulfill the working requirements of MANET and the Internet so that it can connect to either one of these orthogonal network architectures. The architecture that we propose in order to provide MANET nodes with Internet access utilizes fixed gateways (or access points) and exploits the mobility capability of additional mobile ones. Since Internet access to MANET nodes is provided through mobile gateways, the quality of such service depends on the selection procedure used by MANET nodes to choose the most convenient mobile gateways and register with. In this paper, we suggest to use a hybrid criterion based on the weighted sum of the Euclidean distance between MANET nodes and mobile gateways, and the load of mobile gateways, defined as the number of MANET nodes currently registered with them. Moreover, the sum of the weights is normalized to one, where each weight measures the level of interest of the corresponding criterion in the hybrid one. Simulation results show that the hybrid criterion has an impact on the quality of wireless Internet access service depending on the level of interest assigned to each of the Euclidean distance and load criteria in the weighted sum.

[1]  Arkady B. Zaslavsky,et al.  Extending Global IP Connectivity for Ad Hoc Networks , 2003, Telecommun. Syst..

[2]  Yu-Chee Tseng,et al.  Mobile IP and Ad Hoc Networks: An Integration and Implementation Experience , 2002 .

[3]  Aaron Striegel,et al.  A protocol independent Internet gateway for ad hoc wireless networks , 2001, Proceedings LCN 2001. 26th Annual IEEE Conference on Local Computer Networks.

[4]  Robin Kravets,et al.  A hybrid approach to Internet connectivity for mobile ad hoc networks , 2003, 2003 IEEE Wireless Communications and Networking, 2003. WCNC 2003..

[5]  Xiaoyan Hong,et al.  A group mobility model for ad hoc wireless networks , 1999, MSWiM '99.

[6]  G.Q. Maguire,et al.  MIPMANET-mobile IP for mobile ad hoc networks , 2000, 2000 First Annual Workshop on Mobile and Ad Hoc Networking and Computing. MobiHOC (Cat. No.00EX444).

[7]  James D. Solomon,et al.  Mobile IP: The Internet Unplugged , 1997 .

[8]  Charles E. Perkins,et al.  Highly Dynamic Destination-Sequenced Distance-Vector Routing (DSDV) for mobile computers , 1994, SIGCOMM.

[9]  Ahmed Helmy,et al.  The IMPORTANT framework for analyzing the Impact of Mobility on Performance Of RouTing protocols for Adhoc NeTworks , 2003, Ad Hoc Networks.

[10]  Habib M. Ammari,et al.  Integration of mobile ad hoc networks and the Internet using mobile gateways , 2004, 18th International Parallel and Distributed Processing Symposium, 2004. Proceedings..

[11]  Yu-Chee Tseng,et al.  Integrating mobile IP with ad hoc networks , 2003, Computer.