Title
Distributed Channel Allocation for Wireless Mesh Networks Based on Hypergraph Interference Model.
Abstract
Wireless mesh networks (WMNs) are widely used to expand the current wireless network coverage. In this paper, we present a hypergraph-based channel selection method to allocate channels, which can be used to alleviate the accumulative interference from multiple weak interfering links in WMNs. Firstly, we build the ternary interference hypergraph model for all links in a WMN. Then we present a interference mitigating hypergraph game to solve the distributed channel selection problem. It is proved that the proposed game is an exact potential game with at least one Nash equilibrium (NE). Finally, a best reply (BR) based channel selection algorithm for the interference mitigating hypergraph game is presented to obtain NEs. Simulation results show that the presented channel selection method with hypergraph model has a lower global accumulate protocol interference than the existing method with binary graph model.
Year
DOI
Venue
2018
10.1007/978-3-030-00557-3_19
MLICOM
Field
DocType
Citations 
Wireless network,Potential game,Computer science,Selection algorithm,Hypergraph,Communication channel,Computer network,Interference (wave propagation),Artificial intelligence,Wireless mesh network,Channel allocation schemes,Machine learning
Conference
0
PageRank 
References 
Authors
0.34
6
5
Name
Order
Citations
PageRank
Chen Pan18910.35
Yunpeng Cheng2858.84
Ducheng Wu300.34
Lei Zhao43016.56
Youming Sun57914.82