![]() ![]() ![]() īackhaul connectivity of the mesh networks is provided by the mesh base station in the IEEE 802.16 and controlling one or more subscriber stations is also provided. WMNs are specifically constructed by the Firetide for providing connectivity. Few applications of WMN are to access broadband internet, indoor WLAN, mobile user access and connectivity. ![]() WMNs are activated in the industrial standard groups, such as IEEE 802.11, IEEE 802.15, and IEEE 802.16. Key features of WMN are being dynamically self-organized, self-configured, self-healing, scalable, reliable, easy to deploy, and it can establish adhoc network automatically and maintain connectivity. Wireless mesh networking is an emerging hot topic and is still in infancy. Simulation results are presented to demonstrate the effectiveness of the proposed approach which indicates higher bandwidth utilization and throughput as compared with existing fair end-to-end bandwidth allocation (FEBA). Then a suitable path is selected based upon the least routing metric (RM) value. The bandwidth is allocated based jointly on traffic load and interference. This paper introduces a traffic load and interference based bandwidth allocation (TLIBA) scheme for wireless mesh network (WMN) that improves the delay and throughput performance by proper utilization of assigned bandwidth. ![]()
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