Title :
High-Throughput Multicast Routing Metrics in Wireless Mesh Networks
Author :
Roy, Sabyasachi ; Koutsonikolas, Dimitrios ; Das, Saumitra ; Hu, Y. Charlie
Author_Institution :
Purdue University, West Lafayette, IN
Abstract :
The stationary nature of nodes in a mesh network has shifted the main design goal of routing protocols from maintaining connectivity between source and destination nodes to finding high-throughput paths between them. In recent years, numerous link-quality-based routing metrics have been proposed for choosing high-throughput paths for unicast protocols. In this paper we study routing metrics for high-throughput tree or mesh construction in multicast protocols. We show that there is a fundamental difference between unicast and multicast routing in how data packets are transmitted at the link layer, and accordingly there is a difference in how the routing metrics for each of these primitives are designed. We adapt certain routing metrics for unicast for high-throughput multicast routing and propose news ones not previously used for high-throughput. We then study the performance improvement achieved by using different link-quality-based routing metrics via extensive simulation and experiments on a mesh network testbed, using ODMRP as a representative multicast protocol. Our testbed experiment results show that ODMRP enhanced with linkquality routing metrics can achieve up to 17.5% throughput improvement as compared to the original ODMRP.
Keywords :
Computer networks; Intelligent networks; Mesh networks; Multicast protocols; Routing protocols; Spread spectrum communication; Testing; Throughput; Unicast; Wireless mesh networks;
Conference_Titel :
Distributed Computing Systems, 2006. ICDCS 2006. 26th IEEE International Conference on
Print_ISBN :
0-7695-2540-7
DOI :
10.1109/ICDCS.2006.46