网络性能测量探测算法的设计空间

A. D. Jaggard, Swara Kopparty, V. Ramachandran, R. Wright
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引用次数: 20

摘要

我们提出了一个框架,用于设计和分析监测网络性能的探测方法,这是在故障检测等任务中收集测量数据的重要技术。我们使用这个框架来研究探测算法设计中众多可能相互冲突的优化目标之间的相互作用。我们提出了探测算法设计问题的严格定义,可以广泛应用于网络测量场景。我们还提出了与探测算法分析相关的几个指标,包括探测频率和网络覆盖、通信和计算开销以及所需算法状态的数量。我们展示了优化目标之间的内在权衡,并给出了实现某些优化目标组合的困难结果。我们还考虑了为实现某些目标而开发近似算法的可能性,并描述了一种随机方法作为替代方案,使用我们的框架对其进行评估。我们的工作有助于低开销探测技术的未来发展,并介绍了从基于ip的网络到并发路径选择问题的理论基础方法的原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The design space of probing algorithms for network-performance measurement
We present a framework for the design and analysis of probing methods to monitor network performance, an important technique for collecting measurements in tasks such as fault detection. We use this framework to study the interaction among numerous, possibly conflicting, optimization goals in the design of a probing algorithm. We present a rigorous definition of a probing-algorithm design problem that can apply broadly to network-measurement scenarios. We also present several metrics relevant to the analysis of probing algorithms, including probing frequency and network coverage, communication and computational overhead, and the amount of algorithm state required. We show inherent tradeoffs among optimization goals and give hardness results for achieving some combinations of optimization goals. We also consider the possibility of developing approximation algorithms for achieving some of the goals and describe a randomized approach as an alternative, evaluating it using our framework. Our work aids future development of low-overhead probing techniques and introduces principles from IP-based networking to theoretically grounded approaches for concurrent path-selection problems.
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