Conference Proceedings
Window flow control: Macroscopic properties from microscopic factors
A Tang, LLH Andrew, K Jacobsson, KH Johansson, SH Low, H Hjalmarsson
Proceedings IEEE INFOCOM | IEEE | Published : 2008
Abstract
This paper studies window flow control focusing on bridging the gap between microscopic factors such as burstiness in sub-RTT timescales, and observable macroscopic properties such as steady state bandwidth sharing and flow level stability. Using new models, we analytically capture notable effects of microscopic behavior on macroscopic quantities. For loss-based protocols, we calculate the loss synchronization rate for different flows and use it to quantitatively explain the unfair bandwidth sharing between paced and unpaced TCP flows. For delay-based protocols, we show that the ratios of round trip delays are critical to the stability of the system. These results deepen the fundamental unde..
View full abstractGrants
Awarded by NSF
Awarded by Direct For Computer & Info Scie & Enginr; Office of Advanced Cyberinfrastructure (OAC)
Awarded by Office of Advanced Cyberinfrastructure (OAC); Direct For Computer & Info Scie & Enginr
Funding Acknowledgements
The authors thank David Wei, whose Ph.D. thesis triggered this study, for discussions and the NS-2 data in Figure 2. This work was supported by NSF under grant 0435520 and grant EIA-0303620, the WAN-in-Lab project; the KTH ACCESS Linnaeus Centre, the Swedish Research Council, the Swedish Foundation for Strategic Research, and the European Commission through the Network of Excellence HYCON and the Integrated Project RUNES.