2011Unpublished venueRequires access

TCP rate control mechanism based on channel utilization in mobile adhoc networks

Qian Wang, Ruzhi Xu, Dongfeng Yuan

Open publisher page 1 citations

Abstract

The normal TCP congestion control has a problem that the sending rate in slow start phase changes so great that it leads to the decline of TCP performance due to the overflow of bottleneck link buffer. This paper analyzes the limitation of the normal TCP congestion control mechanism and proposes an improved algorithm of TCP congestion control with adaptive slow start based on the bandwidth measurement, namely ASS_TCP. We design a flexible slow start parameter model of adaptive parameter setting which adjusts the size of congestion window by the measurement of the end-to-end available bandwidth. Simulation results show that the probability of packet loss in the congestion window has been significantly decreased and TCP performance has been improved effectively.

About this research paper

What this paper is about

The normal TCP congestion control has a problem that the sending rate in slow start phase changes so great that it leads to the decline of TCP performance due to the overflow of bottleneck link buffer. This paper analyzes the limitation of the normal TCP congestion control mechanism and proposes an improved algorithm of TCP congestion control with adaptive slow start based on the bandwidth measurement, namely ASS_TCP. We design a flexible slow start parameter model of adaptive parameter setting which adjusts the size of congestion window by the measurement of the end-to-end available bandwidth. Simulation results show that the probability of packet loss in the congestion window has been significantly decreased and TCP performance has been improved effectively.

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OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The normal TCP congestion control has a problem that the sending rate in slow start phase changes so great that it leads to the decline of TCP performance due to the overflow of bottleneck link buffer. This paper analyzes the limitation of the normal TCP congestion control mechanism and proposes an improved algorithm of TCP congestion control with adaptive slow start based on the bandwidth measurement, namely ASS_TCP. We design a flexible slow start parameter model of adaptive parameter setting which adjusts the size of congestion window by the measurement of the end-to-end available bandwidth. Simulation results show that the probability of packet loss in the congestion window has been significantly decreased and TCP performance has been improved effectively.

Key concepts: TCP Friendly Rate Control, TCP Westwood plus, CUBIC TCP, TCP tuning, TCP global synchronization, HSTCP, Computer science, Computer network

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