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A Change-of-Measure Approach to Per- Flow Delay Measurement Combining Passive and Active Methods: Mathematical Formulation for CoMPACT Monitor

机译:被动和主动方法相结合的每流延迟测量的变化测量方法:CoMPACT监测器的数学公式

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One problem with active measurement is that, while it is suitable for measuring time-average network performance, it is difficult to measure per-flow quality of service (QoS), which is defined as the average over packets in the flow. To achieve such per-flow QoS measurement, the authors proposed a new technique, called the change- of- measure-based passive/active monitoring (CoMPACT Monitor), which is based on the change-of-measure framework in probability/measure theory and transforms actively obtained information by using passively monitored data. This technique enables us to concurrently measure one-way delay information about individual users, applications, and organizations in detail in a lightweight manner. This paper presents the mathematical formulation for the CoMPACT Monitor and verifies that it works well under some weak conditions. In addition, we investigate its characteristics regarding several implementation issues through simulation and actual network experiments. The results reveal that our technique provides highly qualified estimates involving only a limited amount of extra traffic from active probes.
机译:主动测量的一个问题是,尽管它适合于测量时间平均网络性能,但很难测量每流服务质量(QoS),后者被定义为流中数据包的平均值。为了实现这种按流的QoS测量,作者提出了一种新技术,称为基于测量变化的被动/主动监视(CoMPACT Monitor),它基于概率/测量理论中的测量变化框架。通过使用被动监视的数据来转换主动获得的信息。这种技术使我们能够以轻量级方式同时测量有关单个用户,应用程序和组织的单向延迟信息。本文介绍了CoMPACT Monitor的数学公式,并验证了它在某些弱条件下也能正常工作。此外,我们通过仿真和实际的网络实验来研究其与几个实施问题有关的特征。结果表明,我们的技术提供了高质量的估计,仅涉及来自活动探测器的少量额外流量。

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