Controlling Probe Frequency with Network Traffic Dynamics: An Experience Report

N. Hubballi
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Abstract

Fault detection and localization in modern networks is done with probing techniques. Probes generate additional traffic which compete for its share of bandwidth. In this paper we propose to select a set of probes such that probe paths avoid congested routes and yet can identify all non probe station node failures in the network. In order to select a set of probes, we use historic Round Trip Time (RTT) statistics. Once the probes are selected, subsequently probing is done by adjusting the probing frequency in response to the instantaneous changes in traffic intensity along the probe path. We use RTT as a measure of changing traffic dynamics in the network to adjust the probing frequency. We propose to decrease the probing frequency with increase in RTT and vice versa. We experiment with simulations and real networks and show that probing frequency can be dynamically adjusted with traffic dynamics.
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用网络流量动态控制探针频率:经验报告
现代网络中的故障检测和定位是用探测技术来完成的。探测产生额外的流量来争夺它的带宽份额。在本文中,我们建议选择一组探测,使探测路径避免路由拥塞,但可以识别网络中所有非探测站节点故障。为了选择一组探测,我们使用历史往返时间(RTT)统计数据。一旦选择了探针,随后通过调整探测频率来响应沿着探测路径的流量强度的瞬时变化来进行探测。我们使用RTT作为网络中流量动态变化的度量来调整探测频率。我们建议随着RTT的增加而降低探测频率,反之亦然。仿真实验和实际网络实验表明,探测频率可以根据流量动态动态调整。
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