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Controlling TCP ACK transmission for throughput improvement in LTE-Advanced Pro

机译:控制LTE-Advanced Pro的吞吐量改进TCP ACK传输

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The 3rd Generation Partnership Project (3GPP) is standardizing LTE-Advanced (LTE-A) Pro. One of the technical challenges is the reduction of the uplink latency, which is larger than the downlink latency, aiming at improving the Transmission Control Protocol (TCP) throughput. A study item called Latency Reduction (LATRED) has been agreed to standardize fast uplink access schemes. The proposed solutions include shortening of the subframe length and fast uplink resource allocation to mobile terminals for the uplink data transmissions. The reason for this is that speeding up the data processing of the layer 1 and the layer 2 protocols reduces the TCP Round Trip Time (RTT) and hence the downlink TCP throughput can be improved. However, the asymmetric bandwidth of the radio link has not been taken into account. The asymmetry tends to cause the uplink congestion and uplink resource shortage for TCP ACK transmission, which has a negative impact on the TCP RTT. In this paper, we propose methods to improve the TCP throughput focusing on the TCP ACK filtering in the LTE-A Pro uplink.
机译:第三代伙伴关系项目(3GPP)是标准化LTE-Advanced(LTE-A)PRO。技术挑战之一是降低上行链路延迟,其大于下行链路延迟,旨在改善传输控制协议(TCP)吞吐量。已同意称为延迟减少(Latred)的研究项目标准化快速上行链路接入方案。所提出的解决方案包括缩短对上行链路数据传输的移动终端的子帧长和快速上行链路资源分配。为此的原因是加速层1的数据处理和层2协议减少了TCP往返时间(RTT),因此可以提高下行链路TCP吞吐量。然而,未被考虑无线电链路的非对称带宽。不对称倾向于导致用于TCP ACK传输的上行链路拥塞和上行链路资源短缺,其对TCP RTT具有负面影响。在本文中,我们提出了改进TCP吞吐量的方法,该吞吐量专注于LTE-A Pro上行链路中的TCP ACK滤波。

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