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X-TCP: a cross layer approach for TCP uplink flows in mmwave networks

机译:X-TCP:毫米波网络中用于TCP上行流的跨层方法

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摘要

Millimeter wave frequencies will likely be part of the fifth generation of mobile networks and of the 3GPP New Radio (NR) standard. MmWave communication indeed provides a very large bandwidth, thus an increased cell throughput, but how to exploit these resources at the higher layers is still an open research question. A very relevant issue is the high variability of the channel, caused by the blockage from obstacles and the human body. This affects the design of congestion control mechanisms at the transport layer, and state-of-the-art TCP schemes such as TCP CUBIC present suboptimal performance. In this paper, we present a cross layer approach for uplink flows that adjusts the congestion window of TCP at the mobile equipment side using an estimation of the available data rate at the mmWave physical layer, based on the actual resource allocation and on the Signal to Interference plus Noise Ratio. We show that this approach reduces the latency, avoiding to fill the buffers in the cellular stack, and has a quicker recovery time after RTO events than several other TCP congestion control algorithms.
机译:毫米波频率将可能成为第五代移动网络和3GPP新无线电(NR)标准的一部分。 MmWave通信确实提供了非常大的带宽,因此增加了小区吞吐量,但是如何在更高的层上利用这些资源仍然是一个开放的研究问题。一个非常相关的问题是通道的高可变性,它是由障碍物和人体的阻塞引起的。这会影响传输层的拥塞控制机制的设计,而最新的TCP方案(如TCP CUBIC)表现出次优的性能。在本文中,我们提出了一种针对上行链路流的跨层方法,该方法基于对实际资源分配和基于信号的信号的估计,使用mmWave物理层的可用数据速率的估计值来调整移动设备侧TCP的拥塞窗口干扰加噪声比。我们展示了这种方法减少了等待时间,避免了填充蜂窝堆栈中的缓冲区,并且在RTO事件发生后的恢复时间比其他几种TCP拥塞控制算法要快。

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