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Emulation and Performance Evaluation of a Transparent Reordering Robust TCP Proxy

机译:透明重新排序鲁棒TCP代理的仿真和性能评估

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The use of multiple paths in core networks for TCP traffic sounds promising as it suggests bandwidth aggregation, fault tolerance through redundancy, high resource utilization efficiency, reduced congestions, and increase in TCP throughput. In order to benefit from all these features, the load balancing approaches at different granularities (per-flow, per-destination, and per-packet) have to be applied. In order to promote use of per-packet load balancing in core networks, we already proposed a transparent TCP proxy called as ORTA (Out-of-Order Robustness for TCP with Transparent Acknowledgment Intervention). ORTA was introduced along with simulation results which were all promising and competing with the nontransparent approaches in the literature. However, network simulations may not reflect the real system performances because of the lack of precise and accurate model of the real systems. In this paper, ORTA is implemented as a netfilter module and emulation test results are presented. The results indicate that ORTA prevents TCP performance degradation caused by TCP packet reorderings. Moreover, ORTA has no degrading impact on TCP performance when packet reordering does not exist.
机译:在核心网络中为TCP流量使用多路径听起来很有希望,因为它表明带宽聚合,通过冗余实现容错能力,高资源利用效率,减少的拥塞以及TCP吞吐量的增加。为了从所有这些功能中受益,必须采用不同粒度(每个流,每个目标和每个数据包)的负载平衡方法。为了在核心网络中促进按数据包负载平衡的使用,我们已经提出了一个透明的TCP代理,称为ORTA(带有透明确认干预的TCP的无序鲁棒性)。引入ORTA以及模拟结果,这些结果都是有希望的,并且与文献中的非透明方法竞争。但是,由于缺少真实系统的精确模型,网络模拟可能无法反映真实系统的性能。本文将ORTA作为netfilter模块实现,并给出了仿真测试结果。结果表明,ORTA可以防止由于TCP数据包重新排序而导致的TCP性能下降。此外,当不存在数据包重新排序时,ORTA不会对TCP性能产生不利影响。

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