• DocumentCode
    2667748
  • Title

    Exploiting Hidden Convexity For Flexible And Robust Resource Allocation In Cellular Networks

  • Author

    Tan, Chee Wei ; Palomar, Daniel P. ; Chiang, Mung

  • Author_Institution
    Princeton Univ., Princeton
  • fYear
    2007
  • fDate
    6-12 May 2007
  • Firstpage
    964
  • Lastpage
    972
  • Abstract
    A systematic approach to solve seemingly nonconvex resource allocation problems in wireless cellular networks is studied in this paper. By revealing and exploiting the hidden convexity in the problem formulations, we obtain solutions that can tackle a variety of objective functions, provide robustness to resource allocations such as power, and be obtained often through distributed algorithms. The advantages of such flexibility and robustness are demonstrated through comparisons with the state-of-the-art in recent research literature. First we show how to distributively solve a variety of resource allocation problems in CDMA and interference limited CDMA channels with quality of service constraints, such as meeting minimum queueing delay or energy per bit requirement. Then, for uplink transmission in a CDMA cellular network, we propose an optimal power control scheme with congestion-aware active link protection. In particular, the tradeoff between power expenditure and the protection margin of the SIR-balancing power algorithm is optimized.
  • Keywords
    cellular radio; code division multiple access; concave programming; distributed algorithms; optimal control; power control; quality of service; queueing theory; resource allocation; telecommunication congestion control; wireless channels; QoS constraints; SIR-balancing power algorithm; congestion-aware active link protection; distributed algorithms; energy per bit requirement; flexible resource control; hidden convexity; interference limited CDMA channels; minimum queueing delay; nonconvex resource allocation problems; optimal power control scheme; quality of service; uplink transmission; wireless cellular networks; Delay; Distributed algorithms; Interference constraints; Land mobile radio cellular systems; Multiaccess communication; Power control; Protection; Quality of service; Resource management; Robustness;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    INFOCOM 2007. 26th IEEE International Conference on Computer Communications. IEEE
  • Conference_Location
    Anchorage, AK
  • ISSN
    0743-166X
  • Print_ISBN
    1-4244-1047-9
  • Type

    conf

  • DOI
    10.1109/INFCOM.2007.117
  • Filename
    4215699