EGPRS网络的窗口自适应TCP

D. Lee, Chia-Chun Lin
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引用次数: 7

摘要

TCP拥塞控制在有线或无线环境下的各种网络中得到了广泛的讨论。为了提高TCP对网络拥塞的敏感性,在TCP连接中添加显式通知或让网络中的中间节点加入TCP拥塞控制,已经有很多研究提出。在GPRS/EGPRS系统和其他3G蜂窝网络中,无线网络控制器根据信号干扰比在多个信道编码器中进行选择。因此,单个用户体验到的信道数据速率是随时间变化的。提出了一种适应可变信道数据速率的TCP窗口控制机制。仿真结果表明,与标准TCP Tahoe版本和Reno版本相比,窗口自适应TCP减少了缓冲区占用和数据包传输延迟,并获得了更好的吞吐量利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Window adaptive TCP for EGPRS networks
TCP congestion control has been widely discussed on various networks under wireline or wireless environment. Many research studies have been raised to help TCP be more sensitive to the network congestion by adding explicit notifications in TCP connection or letting the intermediate nodes in the network to join TCP congestion control. In GPRS/EGPRS systems and other 3G cellular networks, the radio network controller chooses among several channel coders according to the signal to interference ratio. Hence, the channel data rate that an individual user experiences is time-dependent and variable. We propose a TCP window control mechanism that adapts to the variable channel data rates. Our simulations show that the window adaptive TCP decreases the buffer occupancy and packet transmission delay, and achieves better throughput utilization when compared with the standard TCP Tahoe version and the Reno version.
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