DocumentCode
2591547
Title
pathWave: Combined estimation of network link capacity and available bandwidth using statistical signal processing
Author
Cong, Lin ; LU, Guohan ; Chen, Yang ; Deng, Beixing ; Li, Xing
Author_Institution
Dept. of Electron. Eng., Tsinghua Univ., China
fYear
2008
fDate
12-14 Dec. 2008
Firstpage
1
Lastpage
6
Abstract
Network link capacity (lc) and available bandwidth (av-bw) are recently considered as importance for various network domains. Consequently, several lc and av-bw measurement techniques and tools have been proposed, where empirical experience, performance comparison and foundational understanding of lc/av-bw measurement have been focused. Many heuristic or non-probabilistic statistical algorithms have been used to estimate lc/av-bw in this literature. However, stochastic analysis indicates that improved understanding of the fundaments of bandwidth estimation could lead to more accurate and effective methods. In this paper, we model network lc/av-bw measurement as a stochastic signal state detection and signal parameter estimation problem. We present a novel approach to measure network lc/av-bw, using packet-pair dispersion technique and our extended self-induced congestion principle based on statistical signal processing theory. We validate the affectivity of our lc/av-bw measurement tool, pathWave in NS-2 simulation environment and evaluate its performance in test bed by comparing with other representative tools. According to the analytical, simulative, and experimental result, we can demonstrate that our statistical signal processing is a more efficient approach for lc/av-bw measurement.
Keywords
channel capacity; channel estimation; signal detection; statistical analysis; stochastic processes; transport protocols; TCP protocol; av-bw measurement techniques; available bandwidth; bandwidth estimation; extended self-induced congestion principle; network link capacity; nonprobabilistic statistical algorithms; packet-pair dispersion technique; pathWave; signal parameter estimation problem; statistical signal processing; stochastic analysis; stochastic signal state detection; Bandwidth; Dispersion; Measurement techniques; Parameter estimation; Signal analysis; Signal detection; Signal processing; Signal processing algorithms; Stochastic processes; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Networks, 2008. ICON 2008. 16th IEEE International Conference on
Conference_Location
New Delhi
ISSN
1556-6463
Print_ISBN
978-1-4244-3805-1
Type
conf
DOI
10.1109/ICON.2008.4772573
Filename
4772573
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