Title :
Congestion Control Based on Cross-Layer Game Optimization in Wireless Mesh Networks
Author :
Xianhu Ma ; Li Xu ; Geyong Min
Author_Institution :
Key Lab. of Network Security & Cryptology, Fujian Normal Univ., Fuzhou, China
Abstract :
Due to the attractive characteristics of high capacity, high-speed, wide coverage and low transmission power, Wireless Mesh Networks become the ideal choice for the next-generation wireless communication systems. However, the network congestion of WMNs deteriorates the quality of service provided to end users. Game theory optimization model is a novel modeling tool for the study of multiple entities and the interaction between them. On the other hand, cross-layer design is shown to be practical for optimizing the performance of network communications. Therefore, a combination of the game theory and cross-layer optimization, named cross-layer game optimization, is proposed to reduce network congestion in WMNs. In this paper, the network congestion control in the transport layer and multi-path flow assignment in the network layer of WMNs are investigated. The proposed cross-layer game optimization algorithm is then employed to enable source nodes to change their set of paths and adjust their congestion window according to the round-trip time to achieve a Nash equilibrium. Finally, evaluation results show that the proposed cross-layer game optimization scheme achieves high throughput with low transmission delay.
Keywords :
game theory; next generation networks; optimisation; quality of service; telecommunication congestion control; wireless mesh networks; Nash equilibrium; congestion window; cross-layer game optimization; game theory; multipath flow assignment; network communications; network congestion control; next-generation wireless communication; quality of service; transport layer; wireless mesh networks; Delays; Game theory; Games; IP networks; Optimization; Protocols; Routing; WMNs; congestion control; cross-layer optimization; game theory;
Conference_Titel :
Mobile Ad-hoc and Sensor Networks (MSN), 2013 IEEE Ninth International Conference on
Conference_Location :
Dalian
Print_ISBN :
978-0-7695-5159-3
DOI :
10.1109/MSN.2013.49