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Inline bandwidth measurements: Implementation difficulties and their solutions

机译:在线带宽测量:实施困难及其解决方案

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We have proposed the concept of inline network measurement, which involves the concept of plugging an active bandwidth measurement into an active TCP connection. Mechanisms using this method have the advantage of requiring no extra traffic for measuring available bandwidth, whereas other active measurement tools cannot fundamentally avoid adding probing traffic onto the network. However, when the inline network measurement algorithms are implemented in general-purpose computers, some problems arise, such as the clock resolution of the kernel system, Interrupt Coalescence (IC) deployed in network interface cards, and the behavior of TCP receiver. In the present paper, we explain these difficulties and describe our current solutions. Furthermore, we implement the measurement algorithms and the solutions against those problems in a FreeBSD 4.10 kernel system, and present some results on experimental networks. The experimentally obtained results are used to verify the solutions and to confirm the effectiveness of our concept, inline network measurement, on actual networks. We also compare the performance of the packet interval-based approaches and packet-burst interval-based approaches, and demonstrate that using packet-burst for the measurement in high-speed networks is quite effective.
机译:我们提出了内联网络测量的概念,其中涉及将活动带宽测量插入活动TCP连接的概念。使用此方法的机制的优点是不需要额外的流量来测量可用带宽,而其他活动的测量工具则无法从根本上避免将探测流量添加到网络上。但是,当在通用计算机中实现嵌入式网络测量算法时,会出现一些问题,例如内核系统的时钟分辨率,网络接口卡中部署的中断合并(IC)和TCP接收器的行为。在本文中,我们解释了这些困难并描述了当前的解决方案。此外,我们在FreeBSD 4.10内核系统中实现了针对这些问题的测量算法和解决方案,并在实验网络上给出了一些结果。实验获得的结果用于验证解决方案并确认我们的概念(在线网络测量)在实际网络上的有效性。我们还比较了基于分组间隔的方法和基于分组突发间隔的方法的性能,并证明了在高速网络中使用分组突发进行测量非常有效。

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