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A mathematical model for the steady state throughput of the Westwood TCP congestion control algorithm

机译:Westwood TCP拥塞控制算法稳态吞吐量的数学模型

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The success of the Internet has been in large part due to the end-to-end design principle of the TCP/IP. Moreover, it is widely recognized that the additive increase multiplicative decrease paradigm (AIMD), implemented by the standard Reno TCP algorithm, is at the core of the Internet stability. Westwood TCP introduces the Additive Increase Adaptive Decrease (AIAD) paradigm for the Internet congestion control. This paper proposes a mathematical model for the steady state Westwood TCP throughput. The model aims at evaluating Westwood TCP stability, fairness and friendliness to Reno TCP. Moreover, simulation results are reported to confirm the theoretical analysis.
机译:互联网的成功很大程度上归功于TCP / IP的端到端设计原理。此外,人们普遍认识到,由标准Reno TCP算法实现的加减乘减范式(AIMD)是Internet稳定性的核心。 Westwood TCP引入了Internet拥塞控制的加性自适应增加(AIAD)范例。本文提出了稳态Westwood TCP吞吐量的数学模型。该模型旨在评估Westwood TCP对Reno TCP的稳定性,公平性和友好性。此外,报告了仿真结果以证实理论分析。

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