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A modification of TCP flow control for improving end-to-end TCP performance over networks with wireless links

机译:修改TCP流量控制,以提高具有无线链接的网络上的端到端TCP性能

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End-to-end Transmission Control Protocol (TCP) performance is one of the more important issues in wireless Internet services. This paper proposes the improvement of end-to-end TCP performance via a TCP-aware link layer protocol called Adaptive TCP (A-TCP). The key idea behind the protocol is that an A-TCP agent, which is located in each base station, makes a mobile host look as if it has a wired link with the base station. This concept is referred to in this paper as the virtual host model. In order to implement this model, the A-TCP agent performs three functions: local retransmission, sender freezing and A-TCP flow control. A-TCP flow control is an original proposal and is also the principal factor for improving end-to-end TCP performance in a wireless Internet environment. In A-TCP flow control, the A-TCP agent marks the window field of each acknowledgment segment with a retransmission buffer size. Therefore, the TCP congestion controls, which happen in a TCP sender, are not caused by wireless link overflow. Performance evaluations were conducted via computer simulations and mathematical analyses. The results of the evaluations show not only that the A-TCP improves end-to-end TCP performance by at least 20%, which is higher compared to other TCP approaches, but also that the A-TCP can provide near-optimal performance in wireless bottleneck conditions. In addition, this paper proposes an A-TCP agent architecture, which consists of virtual host objects and several other functional blocks, and describes a new hand-off policy for the virtual host model, called transport-level soft hand-off.
机译:端到端传输控制协议(TCP)性能是无线Internet服务中较重要的问题之一。本文提出了通过称为自适应TCP(A-TCP)的TCP感知链路层协议来改善端到端TCP性能。该协议背后的关键思想是,位于每个基站中的A-TCP代理使移动主机看起来好像它与基站具有有线链接。本文将此概念称为虚拟主机模型。为了实现此模型,A-TCP代理执行三个功能:本地重传,发送方冻结和A-TCP流量控制。 A-TCP流量控制是最初的建议,并且也是在无线Internet环境中提高端到端TCP性能的主要因素。在A-TCP流控制中,A-TCP代理使用重传缓冲区大小标记每个确认段的窗口字段。因此,在TCP发送器中发生的TCP拥塞控制不是由无线链接溢出引起的。通过计算机模拟和数学分析进行性能评估。评估结果表明,A-TCP不仅将端到端TCP性能提高了至少20%(与其他TCP方法相比更高),而且还表明A-TCP可以在以下方面提供接近最佳的性能:无线瓶颈条件。此外,本文提出了一种A-TCP代理体系结构,该体系结构由虚拟主机对象和其他几个功能块组成,并描述了一种用于虚拟主机模型的新切换策略,称为传输级软切换。

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