• DocumentCode
    1516417
  • Title

    Forward-link capacity in smart antenna base stations with dynamic slot allocation

  • Author

    Kuehner, Rupam ; Todd, Terence D. ; Shad, Faisal ; Kezys, Vytas

  • Author_Institution
    Toronto Software Lab., IBM Canada Ltd., Toronto, Ont., Canada
  • Volume
    50
  • Issue
    4
  • fYear
    2001
  • fDate
    7/1/2001 12:00:00 AM
  • Firstpage
    1024
  • Lastpage
    1038
  • Abstract
    We consider a base station, which communicates to a set of portable stations using a smart antenna operating in multibeam, packet-switched, space division multiple access (SDMA) mode. We assume that the system operates using time division duplexing (TDD) and focus on the problem of access to the stations by the base station in the forward-link direction. A polling protocol is used which permits efficient access in this type of system. The operation of the protocol is unique in that it permits dynamic slot allocation and accommodates variations in channel time coherence. In the protocol, dynamic slot assignment is integrated into the forward-link beam scheduling. This allows us to explore the value of dynamic station slot assignment when constructing the SDMA/TDMA frames. The results show the improvements in capacity, which are possible in such systems and give insight into the degradation in protocol performance that occurs when channel coherence times decrease. We find that very large improvements in capacity are possible using dynamic slot allocation, especially under harsh channel conditions. We also investigate various base station queueing issues in this type of system. It is shown that care must be taken in how buffering is performed so that blocking effects do not unnecessarily degrade the forward-link capacity
  • Keywords
    access protocols; adaptive antenna arrays; array signal processing; buffer storage; channel capacity; land mobile radio; multibeam antennas; multiuser channels; packet radio networks; queueing theory; radio links; space division multiple access; time division multiple access; SDMA/TDMA frames; TDD; base station; base station queueing; blocking effects; buffering; channel conditions; channel time coherence; dynamic station slot assignment; forward-link beam scheduling; forward-link beamforming; forward-link capacity; mobile radio; multibeam antenna; packet switching; polling based TDMA protocol; polling protocol; portable stations; protocol performance; smart antenna base stations; space division multiple access; time division duplexing; Access protocols; Adaptive arrays; Antenna arrays; Array signal processing; Base stations; Degradation; Dynamic scheduling; Multiaccess communication; Slot antennas; Space stations;
  • fLanguage
    English
  • Journal_Title
    Vehicular Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9545
  • Type

    jour

  • DOI
    10.1109/25.938578
  • Filename
    938578