Title :
Joint Power-Frequency-Time Resource Allocation in Clustered Wireless Mesh Networks
Author :
Cheng, Ho Ting ; Zhuang, Weihua
Author_Institution :
Univ. of Waterloo, Waterloo
Abstract :
Wireless mesh networking is an emerging technology for future broadband wireless access. Future wireless networking can benefit from a robust and reliable wireless mesh backbone rendered by mesh routers, providing an all-wireless ambience. Due to the requisite multichannel communications for high-speed data transmissions, power allocation for opportunistically exploiting fading wireless channels, and packet scheduling for QoS provisioning, joint power-frequency-time resource allocation is indispensable. In this article we propose a low-complexity intracluster resource allocation algorithm, taking power allocation, subcarrier allocation, and packet scheduling into consideration. Numerical results demonstrate that our scheme is near optimal, and that our optimality-driven resource allocation approach outperforms a greedy algorithm, working out a better performance compromise among throughput, packet dropping rate, and packet delay.
Keywords :
broadband networks; fading channels; packet radio networks; quality of service; resource allocation; telecommunication network routing; QoS provisioning; broadband wireless access; clustered wireless mesh networks; fading wireless channels; high-speed data transmissions; joint power-frequency-time resource allocation; low-complexity intracluster algorithm; mesh routers; multichannel communications; packet delay; packet dropping rate; packet scheduling; power allocation; subcarrier allocation; Data communication; Fading; Greedy algorithms; Resource management; Robustness; Scheduling algorithm; Spine; Telecommunication network reliability; Throughput; Wireless mesh networks;
Journal_Title :
Network, IEEE
DOI :
10.1109/MNET.2008.4435902