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Sampled time flow control algorithm for fast connection oriented communication networks

Wybrane pełne teksty z tego czasopisma
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Języki publikacji
EN
Abstrakty
EN
In this paper the problem of flow control in fast communication networks is considered. A new sampled time algorithm governing the source behaviour is proposed. The algorithm combines Smith principle with the conventional dead-bit controller. It guarantees full link utilisation and no cell lossin the controled virtual circuit. Consequently, the need of cell retransmission is eliminated. Furthermore, transmission rates generated by the algorithm can always be limited to an arbitrary level greater than the maximum available bandwidth of the controlled connection. A simulation example confirms favourable performance of the proposed controller.
Rocznik
Strony
5--16
Opis fizyczny
Bibliogr. 14 poz.
Twórcy
  • Institute of Automatic Control, Technical University of Łódź, 18/22 Stefanowskiego St., 90-924 Łódź, Poland
  • Division of Computer Networks, Technical University of Łódź, 18/22 Stefanowskiego St., 90-924 Łódź, Poland
Bibliografia
  • [1] Chong S., Nagarajan R., Wang Y. T.: First-order rate-based flow control with dynamic queue threshold for high-speed wide-area ATM networks, Computer Networks and ISDN Systems, 1998, Vol. 29, pp. 2201-2212.
  • [2] Gómez-Stem F., Fomes J. M., Rubio F. R.: Dead-time compensation for ABR traffic control over ATM networks, Control Engineering Practice, 2002, Vol. 10, pp. 481-491.
  • [3] Imer О. C., Compans S., Basar T., Srikant R.: Available bit rate congestion control in ATM networks, IEEE Control Systems Magazine, 2001, 38-56.
  • [4] Izmailov R.: Adaptive feedback control algorithms for large data transfers in highspeed networks, IEEE Transactions on Automatic Control, 1995, Vol. 40, pp. 1469-1471.
  • [5] Jagannathan S., Talluri J.: Predictive congestion control of ATM networks: multiple sources/single buffer scenario, Automatica, 2002, Vol. 38, pp. 815-820.
  • [6] Jain R.: Congestion control and traffic management in ATM networks: recent advances and a survey, Computer Networks and ISDN Systems, 1996, Vol. 28, pp. 1723-1738.
  • [7] Kulkami L. A., Li S.: Performance analysis of a rate-based feedback control scheme, IEEE/ACM Transaction on Networking, 1998, Vol. 6, pp. 797-810.
  • [8] Laberteaux К. P., Rohrs Ch. E., Antsaklis P. J.: A Practical Controller for Explicit rate Congestion Control, IEEE Transactions on Automatic Control, 2002, Vol.47, pp. 960-978.
  • [9] Lengliz I., Kamoun F.: A rate-based flow control method for ABR service in ATM networks, Computer Networks, 2000, Vol. 34, pp. 129-138.
  • [10] Mascolo S.: Smith’s principle for congestion control in high speed ATM networks. Proceedings of the 36th IEEE Conference on Decision and Control, San Diego, 1997, pp. 4595-4600.
  • [11] Mascolo S.: Congestion control in high-speed communication networks using the Smith principle, Automatica, 1999, Vol. 35, pp. 1921-1935.
  • [12] Mascolo S.: Smith’s principle for congestion control in high-speed data networks, IEEE Transactions on Automatic Control, 2000, Vol.45, pp. 358-364.
  • [13] Niculescu S. I.: On delay robustness analysis of a simple control algorithm in high-speed networks, Automatica, 2002, Vol. 38, pp. 885-889.
  • [14] Quet P. F., Ataslar B., Iftar A., Ózbay H., Kalyanaraman S., Kang T.: Rate-based flow controllers for communication networks in the presence of uncertain time- varying multiple time-delays, Automatica, 2002, Vol. 38, pp. 917-928.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-LOD7-0027-0084
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