(Enter summary)
Abstract: This note derives the stationary behavior of idealized TCP congestion avoidance.
More specifically, it derives the stationary distribution of the congestion window size
if loss of packets are independent events with equal probability. The mathematical
derivation uses a fluid flow, continuous time, approximation to the discrete time
process (W n ), where W n is the congestion window after the n-th packet. We derive
explicit results for the stationary distribution and all its moments.
Congestion... (Update)
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BibTeX entry: (Update)
T. Ott, J. Kemperman, and M. Mathis. The stationary behavior of ideal TCP congestion avoidance. ftp://ftp.bellcore.com/pub/tjo/TCPwindow.ps. http://citeseer.ist.psu.edu/article/ott96stationary.html More
@misc{ ott-stationary,
author = "T. Ott and J. Kemperman and M. Mathis",
title = "The stationary behavior of ideal TCP congestion avoidance",
text = "T. Ott, J. Kemperman, and M. Mathis. The stationary behavior of ideal TCP
congestion avoidance. ftp://ftp.bellcore.com/pub/tjo/TCPwindow.ps.",
url = "citeseer.ist.psu.edu/article/ott96stationary.html" }
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Probability Theory (context) - Loeve - 1955
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Forward Acknowledgment: Refining TCP Congestion Control
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The Theory of Functions (context) - Titchmarsh - 1932
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