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A Longitudinal Measurement Study of TCP Performance and Behavior in 3G/4G Networks Over High Speed Rails

机译:3G / 4G网络中高速铁路上TCP性能和行为的纵向测量研究

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While TCP has been extensively studied in static and low speed mobility situations, it has not yet been well explored in high speed mobility scenarios. Given the increasing deployment of high speed transport systems (such as high speed rails), there is an urgent need to understand the performance and behavior of TCP in such high speed mobility environments. In this paper, we conduct a comprehensive study to investigate the performance and behavior of TCP in a high speed environment with a peak speed of 310 km/h. Over a 16-month period spanning four years, we collect 500 GB of performance data on 3/4G networks in high speed trains in China, covering a distance of 108,490 km. We start by analyzing performance metrics, such as RTT, packet loss rate, and throughput. We then evaluate the challenges posed on the main TCP operations (establishment, transmission, congestion control, flow control, and termination) by such high speed mobility. This paper shows that RTT and packet loss rate increase significantly and throughput drops considerably in high speed situations. Moreover, TCP fails to adapt well to such extremely high speed leading to abnormal behavior, such as high spurious retransmission time out rate, aggressive congestion window reduction, long delays during connection establishment and closure, and transmission interruption. As we prepare to move into the era of 5G, and as the need for high speed travel continues to increase, our findings indicate a critical need for efforts to develop more adaptive transport protocols for such high speed environments.
机译:尽管已经在静态和低速移动性情况下对TCP进行了广泛的研究,但在高速移动性场景中尚未对其进行深入的研究。鉴于高速传输系统(例如高速铁路)的部署越来越多,迫切需要了解这种高速移动环境中TCP的性能和行为。在本文中,我们进行了全面的研究,以研究峰值速度为310 km / h的高速环境中TCP的性能和行为。在长达四年的16个月中,我们通过3 / 4G网络在中国的高速列车上收集了500 GB的性能数据,覆盖范围为108,490 km。我们首先分析性能指标,例如RTT,丢包率和吞吐量。然后,我们将评估如此高速的移动性对主要TCP操作(建立,传输,拥塞控制,流控制和终止)构成的挑战。本文表明,在高速情况下,RTT和丢包率显着提高,吞吐量显着下降。此外,TCP无法很好地适应这种异常高速,从而导致异常行为,例如高虚假重传超时率,主动拥塞窗口减少,连接建立和关闭期间的长时间延迟以及传输中断。随着我们准备进入5G时代,以及对高速旅行的需求持续增长,我们的发现表明迫切需要为此类高速环境开发更多的自适应传输协议。

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