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Enhancing TCP end-to-end performance in millimeter-wave communications

机译:增强毫米波通信中的TCP端到端性能

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摘要

Recently, millimeter-wave (mmWave) communications have received great attention due to the availability of large spectrum resources. Nevertheless, their impact on TCP performance has been overlooked, which is observed that the said TCP performance collapse occurs owing to the significant difference in signal quality between LOS and NLOS links. We propose a novel TCP design for mmWave communications, a mmWave performance enhancing proxy (mmPEP), enabling not only to overcome TCP performance collapse but also exploit the properties of mmWave channels. The base station installs the TCP proxy to operate the two functionalities called Ack management and batch retransmission. Specifically, the proxy sends the said early-Ack to the server not to decrease its sending rate even in the NLOS status. In addition, when a packet-loss is detected, the proxy retransmits not only lost packets but also the certain number of the following packets expected to be lost too. It is verified by ns-3 simulation that compared with benchmark, mmPEP enhances the end-to-end rate and packet delivery ratio by maintaining high sending rate with decreasing the loss recovery time.
机译:最近,由于大频谱资源的可用性,毫米波(mmWave)通信受到了极大的关注。然而,它们对TCP性能的影响被忽略了,可以观察到,由于LOS和NLOS链路之间信号质量的显着差异,发生了所述TCP性能崩溃。我们为mmWave通信提出了一种新颖的TCP设计,即mmWave性能增强代理(mmPEP),它不仅可以克服TCP性能下降,而且可以利用mmWave通道的特性。基站安装TCP代理以操作称为Ack管理和批量重传的两个功能。具体地,代理即使在NLOS状态下,也将所述Early-Ack发送给服务器以不降低其发送速率。另外,当检测到分组丢失时,代理不仅重传丢失的分组,而且还重传预期还会丢失的一定数量的后续分组。通过ns-3仿真证明,与基准测试相比,mmPEP通过保持高发送速率并减少丢失恢复时间来提高端到端速率和数据包传输率。

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