DocumentCode :
1838901
Title :
FAST CASH: FAir and STable Channel ASsignment on Heterogeneous Wireless Mesh Network
Author :
Yang, Panlong ; Chen, Guihai
Author_Institution :
State Key Lab. for Novel Software Technol., Nanjing Univ., Nanjing
fYear :
2008
fDate :
18-21 Nov. 2008
Firstpage :
451
Lastpage :
456
Abstract :
Nowadays wireless mesh routers are facilitating with more wireless channels than ever because of the advanced wireless communication technologies such as OFDM, SDR and CR(cognitive radio). With multi-radio and multichannel communication capability, spectrum heterogeneity are widely existing in multi-radio wireless systems, such that network performances usually suffer from channel bandwidth and transmission power discrepancy. Many seminar works having been proposed are generally focusing on throughput maximization in a given network configuration, which would suffer from highly dynamic network topology and variable spectrum conditions. In this paper, we prove that, heterogeneity in wireless network would lead to resource constrained regions, and unfair wireless resource allocation would deteriorate throughput on some links. In this paper, we propose a fair and stable scheduling algorithm on heterogeneous multichannel multi-radio wireless mesh network (MCMR WMN), balancing these two objectives between network throughput. Our scheduling algorithm is based on multiple coloring algorithm and maximum matching algorithm, where wireless channels and interference links correspond to the two node sets in bipartite graph. Multiple channels and interfaces would be effectively colored in achieving a minimal scheduling period. Analytical results show that, max-min fairness could optimize heterogeneous network throughput in case that the data flow is congested. Stable scheduling would degrade the throughput and fairness as well, however, it could maintain a relative high throughput as channels would possibly fail. Our algorithm is effective in achieving optimized network throughput while maintaining a relative stability. Simulation results show that , the proposed scheduling algorithm effectively balance between fairness and stability on wireless channel utilization.
Keywords :
channel allocation; radio networks; telecommunication network routing; telecommunication network topology; wireless channels; channel assignment; channel bandwidth; heterogeneous wireless mesh network; multi-radio capability; multichannel communication capability; network topology; scheduling algorithm; transmission power discrepancy; wireless channel utilization; wireless mesh routers; wireless resource allocation; Bandwidth; Communications technology; Network topology; OFDM; Scheduling algorithm; Seminars; Stability; Throughput; Wireless communication; Wireless mesh networks; Maximum Matching; Optimization; Scheduling; Wireless Mesh Network;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Young Computer Scientists, 2008. ICYCS 2008. The 9th International Conference for
Conference_Location :
Hunan
Print_ISBN :
978-0-7695-3398-8
Electronic_ISBN :
978-0-7695-3398-8
Type :
conf
DOI :
10.1109/ICYCS.2008.460
Filename :
4709015
Link To Document :
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