应用推测技术提高TCP在有损链路上的吞吐量

H. Bai, D. Lija, Mohammed Atiquzzaman
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引用次数: 5

摘要

传输控制协议(TCP)在有损链路上由于拥塞损失和链路损坏损失共存而导致的吞吐量下降,与CPU设计中由于控制风险而导致的处理器性能下降非常相似。首先,在有损耗链路的网络中,两种类型的损失事件可以被认为是CPU中分支结果的两种可能性(正确推测vs.错误推测)。其次,这两个问题都会导致其应用程序环境中的性能下降,即处理器中的损耗(以时钟周期计算)和TCP网络中的吞吐量下降(以每秒比特数计算)。这促使我们应用推测技术(即,推测分支预测的结果),用于克服处理器中的控制依赖,当TCP连接中涉及有损链路时,用于TCP改进。本文的目的是提出一种基于协议级推测的TCP修改,以提高其在有损链路上的吞吐量。仿真结果表明,与以往的研究相比,本文提出的算法显著提高了卫星链路网络中的TCP吞吐量
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applying speculative technique to improve TCP throughput over lossy links
The throughput degradation of transport control protocol (TCP) over lossy links due to the coexistence of congestion losses and link corruption losses is very similar to the degradation of processor performance due to control hazards in CPU design. First, two types of loss events in networks with lossy links can be considered as two possibilities of a branching result (correct speculation vs. incorrect speculation) in a CPU. Secondly, both problems result in performance degradations in their application environments, i.e., penalties (in clock cycles) in a processor, and throughput degradation (in bit per second) in TCP networks. This has motivated us to apply speculative techniques (i.e., speculating on the outcome of branch predictions), used to overcome control dependencies in a processor, to TCP improvements when lossy links are involved in TCP connections. The objective of this paper is to propose a protocol-level speculation based TCP modification to improve its throughput over lossy links. Simulation results show that, compared to other prior research, our proposed algorithm significantly improves TCP throughput in a network with satellite links
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