Title :
FD-AQM: Fairness-Aware Delay-Controlled Active Queue Management in 802.11s-Based Multi-Radio Multi-Channel Wireless Mesh Networks
Author :
Nam-Seok Ko ; Myoung-Hun Kim ; Hong-Shik Park
Author_Institution :
Dept. of Inf. & Commun. Eng., KAIST, Daejeon, South Korea
Abstract :
Several active queue management (AQM) schemes have been proposed to address the bufferbloat issue, a long network delay and performance degradation issue caused by excess buffering of packets in network nodes. The solutions proposed up to now, however, satisfy only a subset of the key network performance metrics, i.e., end-to-end throughput, throughput fairness, and delay, in 802.11s-based multi-radio multi-channel wireless mesh networks (MRMC WMN). In this letter, we propose FD-AQM, a fairness-aware delay-controlled AQM to satisfy all three key network performance metrics simultaneously in the 802.11s-based MRMC WMN. The proposed FD-AQM achieves the goal by adopting a per-queue drop interval which is recalibrated according to the average round-trip time of flows, and a drop decision mechanism which considers average throughput as well as target delay. Through simulations, we show that FD-AQM is superior to other AQM schemes in terms of throughput and fairness.
Keywords :
telecommunication congestion control; wireless LAN; wireless channels; wireless mesh networks; 802.11-based multiradio multichannel WMN; FD-AQM; MRMC wireless mesh network throughput delay; bufferbloat issue; drop decision mechanism; end-to-end throughput fairness; fairness aware delay controlled active queue management; packets buffering; performance degradation; target delay; Delays; Indexes; Load modeling; Telecommunication traffic; Throughput; Wireless communication; Wireless mesh networks; 802.11s-based multi-radio multi-channel wireless mesh network; 802.11sbased multi-radio multi-channel wireless mesh network; Active queue management; active queue management; fairness;
Journal_Title :
Communications Letters, IEEE
DOI :
10.1109/LCOMM.2015.2412534