无线网络中可用带宽的测量

A. Johnsson, M. Björkman
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引用次数: 16

摘要

BART是一种先进的主动端到端带宽测量方法,它不仅可以估计可用带宽,还可以估计瓶颈链路的链路容量。它使用卡尔曼滤波器在测量过程中实时给出估计。在本文中,我们研究了802.11网络对BART产生的带宽估计的影响,BART使用的卡尔曼滤波器是可调的,本文的贡献之一是展示了当瓶颈是802.11链路时,如何调整卡尔曼滤波器以提高实时跟踪和估计精度。此外,本文还讨论了如何解释BART和类似的带宽估计工具在无线场景中使用时依赖于自诱导拥塞产生的估计。一项分析表明,BART给出的估计是正确的,但它对应的是无线链路的公平份额,而不是未使用的容量。然而,这些估计值确实表明了当发送和/或接收网络流量时,无线网络中的应用程序或设备可以期望多少带宽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On measuring available bandwidth in wireless networks
BART is a state-of-the-art active end-to-end bandwidth measurement method that estimates not only the available bandwidth but also the link capacity of the bottleneck link. It uses a Kalman filter to give estimates in real time during a measurement session. In this paper, we have studied the impact of 802.11 networks on the bandwidth estimates produced by BART. The Kalman filter used by BART is tunable, and one of the contributions of this paper is to show how the Kalman filter should be adjusted to improve real-time tracking and estimation accuracy when the bottleneck is an 802.11 link. Further, the paper contributes by discussing how to interpret the estimates produced by BART and similar bandwidth estimation tools relying on self-induced congestion when used in wireless scenarios. An analysis show that the BART estimates produced are correct - but corresponds to a fair share of the wireless link rather than to the unused capacity. However, the estimates do indicate how much bandwidth an application or device in the wireless network can expect when sending and/or receiving network traffic.
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