TY - GEN
T1 - Exploiting use of a new performance metric for construction of robust and efficient wireless backbone network
AU - Zhang, Ziyi
AU - Ma, Qiang
AU - Wang, Xin
PY - 2010
Y1 - 2010
N2 - In order to improve transmission throughput of a multi-hop wireless network, many efforts have been made in recent years to reduce traffic and hence transmission collisions by constructing backbone networks with minimum size. However, many other important issues need to be considered. Instead of simply minimizing the number of backbone nodes or supporting some isolated network features, in this work, we exploit the use of algebraic connectivity to control backbone network topology design for concurrent improvement of backbone network robustness, capacity, stability and routing efficiency. In order to capture other network features, we also provide a general cost function and introduce a new metric, connectivity efficiency, to tradeoff algebraic connectivity and cost for backbone construction. We have designed both centralized and distributed algorithms to build more robust and efficient backbone infrastructure to better support the application needs. Our performance studies demonstrate that, compared to peer work, our algorithms could achieve much higher throughput and delivery ratio, and much lower end-to-end delay and routing distances under all test scenarios.
AB - In order to improve transmission throughput of a multi-hop wireless network, many efforts have been made in recent years to reduce traffic and hence transmission collisions by constructing backbone networks with minimum size. However, many other important issues need to be considered. Instead of simply minimizing the number of backbone nodes or supporting some isolated network features, in this work, we exploit the use of algebraic connectivity to control backbone network topology design for concurrent improvement of backbone network robustness, capacity, stability and routing efficiency. In order to capture other network features, we also provide a general cost function and introduce a new metric, connectivity efficiency, to tradeoff algebraic connectivity and cost for backbone construction. We have designed both centralized and distributed algorithms to build more robust and efficient backbone infrastructure to better support the application needs. Our performance studies demonstrate that, compared to peer work, our algorithms could achieve much higher throughput and delivery ratio, and much lower end-to-end delay and routing distances under all test scenarios.
UR - https://www.scopus.com/pages/publications/77956587601
U2 - 10.1109/IWQoS.2010.5542753
DO - 10.1109/IWQoS.2010.5542753
M3 - Conference contribution
AN - SCOPUS:77956587601
SN - 9781424459889
T3 - IEEE International Workshop on Quality of Service, IWQoS
BT - 2010 IEEE 18th International Workshop on Quality of Service, IWQoS 2010
T2 - 2010 IEEE 18th International Workshop on Quality of Service, IWQoS 2010
Y2 - 16 June 2010 through 18 June 2010
ER -