• DocumentCode
    1966479
  • Title

    Co-existence DCA: dynamic channel allocations allowing underlaying autonomous microcells

  • Author

    I, Chih-lin ; Haleem, M.A.

  • Author_Institution
    Bell Labs., Lucent Technol., USA
  • Volume
    3
  • fYear
    1997
  • fDate
    4-7 May 1997
  • Firstpage
    1455
  • Abstract
    To facilitate the coexistence of embedded autonomous indoor microcellular environments, a new form of dynamic channel assignment (DCA) algorithms for outdoor macrocellular systems is proposed in this paper. The co-existence of two systems without excessive mutual interference is achieved through a novel mechanism, i.e., intelligent exclusion of predefined subsets of the universal channel set from the dynamic assignment in the outdoor cells. Such channel exclusion results in a guaranteed number of channels available to the autonomous indoor systems anywhere they are; while incurring minimal DCA performance degradation in the macrocells. The resulting DCA algorithms are termed the co-existence DCA (CE-DCA) algorithms. We formulate the problem of CE-DCA in a rigorous manner and discuss the parameters involved in achieving optimum combined capacity of macro and micro cellular systems. Using the local packing dynamic channel assignment (LPDCA) algorithm as the base line DCA in the macrocellular system, we present both statistic and deterministic CE-DCA schemes, and compare their performances under various scenarios
  • Keywords
    cellular radio; frequency allocation; indoor radio; land mobile radio; radio spectrum management; CE-DCA algorithm; DCA performance degradation; LPDCA; autonomous indoor systems; channel exclusion; co-existence DCA; deterministic CE-DCA; dynamic channel allocations; embedded autonomous indoor microcellular environments; local packing dynamic channel assignment; micro cellular system; mutual interference; optimum combined capacity; outdoor cells; outdoor macrocellular systems; statistic CE-DCA; underlaying autonomous microcells; universal channel set; Base stations; Channel allocation; Degradation; Frequency; Interference; Macrocell networks; Microcell networks; Production facilities; Statistics; Wireless networks;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Vehicular Technology Conference, 1997, IEEE 47th
  • Conference_Location
    Phoenix, AZ
  • ISSN
    1090-3038
  • Print_ISBN
    0-7803-3659-3
  • Type

    conf

  • DOI
    10.1109/VETEC.1997.605541
  • Filename
    605541