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Evaluation and characterization of available bandwidth probing techniques

机译:评估和表征可用的带宽探测技术

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The packet pair mechanism has been shown to be a reliable method to measure the bottleneck link capacity on a network path, but its use for measuring available bandwidth is more challenging. In this paper, we use modeling, measurements, and simulations to better characterize the interaction between probing packets and the competing network traffic. We first construct a simple model to understand how competing traffic changes the probing packet gap for a single-hop network. The gap model shows that the initial probing gap is a critical parameter when using packet pairs to estimate available bandwidth. Based on this insight, we present two available bandwidth measurement techniques, the initial gap increasing (IGI) method and the packet transmission rate (PTR) method. We use extensive Internet measurements to show that these techniques estimate available bandwidth faster than existing techniques such as Pathload, with comparable accuracy. Finally, using both Internet measurements and ns simulations, we explore how the measurement accuracy of active probing is affected by factors such as the probing packet size, the length of probing packet train, and the competing traffic on links other than the tight link.
机译:数据包对机制已被证明是一种测量网络路径上瓶颈链路容量的可靠方法,但其用于测量可用带宽的挑战更大。在本文中,我们使用建模,测量和仿真来更好地表征探测数据包与竞争网络流量之间的交互。我们首先构建一个简单的模型来了解竞争流量如何改变单跳网络的探测数据包间隙。间隙模型显示,当使用数据包对估算可用带宽时,初始探测间隙是一个关键参数。基于此见解,我们介绍了两种可用的带宽测量技术,即初始间隙增加(IGI)方法和数据包传输速率(PTR)方法。我们使用广泛的Internet测量结果表明,与现有技术(例如“路径负载”)相比,这些技术估计可用带宽的速度更快,并且准确性相当。最后,使用Internet测量和ns模拟,我们探索了主动探测的测量精度如何受到诸如探测包大小,探测包序列的长度以及除紧密链路以外的链路上竞争流量等因素的影响。

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