分布式网络仿真保真监测中的无源时延测量

Houssam ElBouanani, C. Barakat, W. Dabbous, T. Turletti
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引用次数: 2

摘要

仿真已成为网络研究中验证和评估的常用方法。它为研究人员提供了一个包含的、可定制的和可扩展的测试环境,它可以很容易地打包和发布,以便潜在的读者复制他们的结果。然而,由于网络组件只是虚拟的,仿真缺乏物理测试平台固有的真实感。鉴于此,监控仿真网络的特定指标已被提出作为一种解决方案,以在一定程度上减轻由仿真引起的不准确性。虽然这在单机设置中不难实现(例如使用Mininet),但在模拟分布在多台物理机器(例如Distrinet)上的场景中,由于缺乏时间同步,监控受到限制。在本文中,我们处理数据包延迟监控的情况,为此我们提出了一种方法,用于被动地测量单向延迟与时间同步的基本假设,以及往返延迟。为了有效地实现我们的方法,我们提出了一种基于ebpf的数据包测量工具,该工具在特定于仿真的假设下比当前的数据包嗅探器性能更好。我们在一个开放的测试平台上实现和评估了我们的系统,并表明它可以在几微秒内达到完美的准确度和精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Passive Delay Measurement for Fidelity Monitoring of Distributed Network Emulation
Emulation has become a popular approach for the validation and evaluation of network research. It provides researchers with a contained, customizable, and scalable testing environment, which can be easily packaged and published for potential readers to reproduce their results. However, as the network components are only virtual, emulation lacks the inherent realism of physical testbeds. In light of this, monitoring specific metrics of the emulated network has been proposed as a solution to mitigate to some degree inaccuracies caused by emulation. While this is not difficult to implement in a single-machine setting (e.g. with Mininet), monitoring is limited by the lack of time synchronization in scenarios where the emulation is distributed over multiple physical machines (e.g., Distrinet). In this paper we tackle the case of packet delay monitoring, to which we propose a methodology for passively measuring one-way delays with underlying assumptions about time synchronization, and round-trip delays otherwise. For an efficient implementation of our methodology, we propose an eBPF-based packet measurement tool that performs better than current packet sniffers under emulation-specific assumptions. We implement and evaluate our system in an open testbed and show that it can reach results within few microseconds of perfect accuracy and precision.
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