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Improved coexistence and loss tolerance for delay based TCP congestion control

机译:改进的共存和丢失容忍度,用于基于延迟的TCP拥塞控制

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Loss based TCP congestion control has been shown to not perform well in environments were there is non-congestion related packet losses. Delay based TCP congestion control algorithms provide a low latency connection with no congestion related packet losses, and have the potential for being tolerant to non-congestion related losses. Unfortunately, delay based TCP does not compete well with loss based TCP, currently limiting its deployment. We propose a delay based algorithm which extends work by Budzisz et al. to provide tolerance to non-congestion related losses, and better coexistence with loss based TCP in lightly multiplexed environments. We demonstrate that our algorithm improves the throughput when there are 1% packet losses by about 150%, and gives more than 50% improvement in the ability to share capacity with NewReno in lightly multiplexed environments.
机译:已经证明,基于丢失的TCP拥塞控制在与非拥塞相关的数据包丢失的环境中不能很好地执行。基于延迟的TCP拥塞控制算法提供了低延迟连接,而没有与拥塞相关的数据包丢失,并且有可能容忍与非拥塞相关的丢失。不幸的是,基于延迟的TCP与基于损耗的TCP不能很好地竞争,目前限制了它的部署。我们提出了一种基于延迟的算法,该算法扩展了Budzisz等人的工作。提供对非拥塞相关损失的容忍度,并在轻度复用的环境中与基于损失的TCP更好地共存。我们证明,当丢包率为1%时,我们的算法将吞吐量提高了约150%,在轻度复用的环境中,与NewReno共享容量的能力提高了50%以上。

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