6th International ICST Symposium on Modeling and Optimization

Research Article

Joint Beamforming and Channel Selection for Multicast IEEE 802.11n WLANs

  • @INPROCEEDINGS{10.4108/ICST.WIOPT2008.3174,
        author={Christos Papathanasiou and Leandros Tassiulas},
        title={Joint Beamforming and Channel Selection for Multicast IEEE 802.11n WLANs},
        proceedings={6th International ICST Symposium on Modeling and Optimization},
        publisher={IEEE},
        proceedings_a={WIOPT},
        year={2008},
        month={8},
        keywords={Array signal processing Delay Frequency Interference Mobile communication Physical layer Quality of service Streaming media Throughput Wireless LAN},
        doi={10.4108/ICST.WIOPT2008.3174}
    }
    
  • Christos Papathanasiou
    Leandros Tassiulas
    Year: 2008
    Joint Beamforming and Channel Selection for Multicast IEEE 802.11n WLANs
    WIOPT
    IEEE
    DOI: 10.4108/ICST.WIOPT2008.3174
Christos Papathanasiou1,*, Leandros Tassiulas1,*
  • 1: Department of Computer and Communications Engineering, University of Thessaly, Greece.
*Contact email: cpapa@inf.uth.gr, leandros@inf.uth.gr

Abstract

Multicast transmission over WLANs is becoming a popular application. IEEE 802.11n technology is developed due to the ever increasing demand for higher data rate and Quality of Service (QoS). However, there is an unmanaged and rapid growth of wireless devices in unlicensed frequency bands. WLANs experience significant interference from near-by environment which lead to significant performance degradation. The impetus of the present study is to describe a novel distributed algorithm that will allow interfering Access Points (APs) to select appropriately the channel band that will experience minimal interference. Therefore, a fair share of available spectrum is achieved. We investigate the IEEE 802.11n WLAN where a large number of clients attempt the same high bit rate from the single AP. We formulate the problem of transmit beamforming to a multicast group and minimize total emitted power adopting a QoS criterion.