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BBRp: Improving TCP BBR Performance Over WLAN

机译:BBRP:改善WLAN的TCP BBR性能

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摘要

This paper shows the inefficiency of TCP BBR in exploiting the Wi-Fi bandwidth. This limitation of BBR has been observed with both IEEE 802.11n and IEEE 802.11ac, where the mechanism of frame aggregation is used to boost the throughput of data transmission. In the last years, many TCP variants have been introduced to limit the bufferbloat phenomena and bound the latency through a reduction of the queue backlog injection rate. However, this mechanism impacts on the Wi-Fi frame aggregation logic, impeding TCP congestion controls to reach the full throughput potential of a Wi-Fi interface. While this problem can be solved with TCP Cubic by allowing the sender node to enqueue more packets, for TCP BBR the fix is not the same, as it has a customized pacing algorithm. With this contribution we propose BBRp, a new BBR version that allows for fine-tuning the congestion control pace, achieving between four and six times more throughput over IEEE 802.11n and IEEE 802.11ac channels, at the cost of an increased latency that is however always less than the latency obtainable with loss-based TCP congestion controls.
机译:本文显示了TCP BBR在利用Wi-Fi带宽方面的效率。通过IEEE 802.11n和IEEE 802.11ac,已经观察到BBR的这种限制,其中帧聚合的机制用于提高数据传输的吞吐量。在过去几年中,已经引入了许多TCP变体来限制缓冲现象,并通过减少队列积压注射速率来绑定延迟。但是,该机制对Wi-Fi帧聚合逻辑的影响影响,阻碍了TCP拥塞控件,以达到Wi-Fi接口的完整吞吐量电位。虽然通过允许发件人节点允许发件人节点来用TCP立方体来解决这个问题,但是对于TCP BBR,FIX不相同,因为它具有定制的起搏算法。通过此贡献,我们提出了一个新的BBR版本,该新的BBR版本允许微调拥塞控制速度,以增加IEEE 802.11n和IEEE 802.11ac通道的吞吐量在四个和六倍之间,以增加延迟的成本总是小于基于损失的TCP拥塞控制的延迟。

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