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On the convergence of adaptive power control algorithm for cellular systems

Published:28 June 2010Publication History

ABSTRACT

The proposed scheme utilizes local information and a predictive model to provide feedback control commands for power adjustments. A sufficient condition that ensures system stability is obtained. In addition, the bound of the received carrier-to-interference ratio (CIR) is derived in the presence of short-term fading. The bound of the received CIR is shown to be a function of the power control step size and the target CIR. Simulation results were obtained to verify the theoretical derivations.

References

  1. G. J. Foschini and Z. Miljanic, "A simple distributed autonomous power control algorithm and its convergence," IEEE Trans. Veh. Technol., vol. 42, no. 4, pp. 641--646, Nov. 1993.Google ScholarGoogle ScholarCross RefCross Ref
  2. C. J. Chang, J. H. Lee and F. C. Ren, "Design of power control mechanisms with PCM realization for the uplink of a DS-CDMA cellular mobile radio system," IEEE Trans. Veh. Technol., vol. 45, no. 3, pp. 522--530, Aug. 1996.Google ScholarGoogle ScholarCross RefCross Ref
  3. S. Ariyavisitakul, "Signal and interference statistics of a CDMA system with feedback power control---Part II," IEEE Trans. Commun., vol. 42, no. 2/3/4, pp. 597--605, Feb./Mar./Apr. 1994.Google ScholarGoogle Scholar
  4. J. D. Herdtner and E. K. P. Chong, "Analysis of a class of distributed asynchronous power control algorithms for cellular wireless systems," IEEE J. Select. Areas Commun. vol. 18, no. 3, pp. 436--446, Mar. 2000. Google ScholarGoogle ScholarDigital LibraryDigital Library
  5. R. D. Yates, "A frame for uplink power control in cellular radio systems," IEEE J. Select. Areas Commun., vol. 13, no. 7, pp. 1341--1347, Sept. 1995. Google ScholarGoogle ScholarDigital LibraryDigital Library
  6. S. V. Hanly, "An algorithm for combined cell-site selection and power control to maximize cellular spread spectrum capacity," IEEE J. Select. Areas Commun., vol. 13, no. 7, pp. 1332--1340, Sept. 1995. Google ScholarGoogle ScholarDigital LibraryDigital Library
  7. D. Kim, K. N. Chang and S. Kim, "Efficient distributed power control for cellular mobile systems," IEEE Trans. Veh. Technol., vol. 46, no. 2, pp. 313--319, May 1997.Google ScholarGoogle ScholarCross RefCross Ref
  8. D. Kim, "On the convergence of fixed-step power control algorithms with binary feedback for mobile communication systems," IEEE Trans. Commun., vol. 49, no. 2, pp. 249--252, Feb. 2001.Google ScholarGoogle ScholarCross RefCross Ref
  9. Jyh-Horng Wen, Young-Long Chen, and Jyu-Wei Wang, "Convergence Analysis of Distributed Fixed-Step Power Control Algorithm for Cellular Mobile Systems," Wireless Communications and Mobile Computing, vol. 8, no. 6, pp. 715--731, Aug. 2008. Google ScholarGoogle ScholarDigital LibraryDigital Library
  10. C. W. Sung, and W. S. Wong, "A distributed fixed-step power control algorithm with quantization and active link quality protection," IEEE Trans. Veh. Technol., vol. 48, no. 2, pp. 553--562, Mar. 1999.Google ScholarGoogle ScholarCross RefCross Ref
  11. H. Zhang, C. S. Chen and W. S. Wong, "Distributed Power Control for Time Varying Systems: Performance and Convergence Analysis," IEEE Trans. Veh. Technol., vol. 54, no. 5, pp. 1896--1904, Sept. 2005.Google ScholarGoogle ScholarCross RefCross Ref
  12. M. Andersin and Z Rosberg, "Time variant power control in cellular networks," In Proc. IEEE PIMRC., Oct. 1996, pp. 193--197.Google ScholarGoogle Scholar
  13. S. Ulukus and R. D. Yates, "Stochastic power control for cellular radio systems," IEEE Trans. Commun., vol. 46, no. 6, pp. 784--798, June 1998.Google ScholarGoogle ScholarCross RefCross Ref
  14. F. Gunnarsson, F. Gustafsson and J. Blom, "Dynamical effects of time delays and time delay compensation in power controlled DS-CDMA," IEEE J. Select. Areas Commun., vol. 19, no. 1, pp. 141--151, Jan. 2001. Google ScholarGoogle ScholarDigital LibraryDigital Library
  15. Young-Long Chen, Chih-Peng Li, Jyu-Wei Wang and Jyh-Horng Wen, "Performance Analysis of Multi-Step Power Control Algorithm for Cellular Systems," Euro. Trans. Telecomms. vol. 19, no. 2, pp. 193--206, Mar. 2008.Google ScholarGoogle ScholarCross RefCross Ref

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        cover image ACM Other conferences
        IWCMC '10: Proceedings of the 6th International Wireless Communications and Mobile Computing Conference
        June 2010
        1371 pages
        ISBN:9781450300629
        DOI:10.1145/1815396

        Copyright © 2010 ACM

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        • Published: 28 June 2010

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