大型分布式系统的实时端到端网络监控

H. Song, P. Yalagandula
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引用次数: 15

摘要

测量实时端到端网络路径性能指标对于一些分布式应用程序非常重要,例如媒体流系统(例如,用于切换到具有更高带宽和更低抖动的路径)和内容分发系统(例如,用于选择具有更低延迟的服务器)。然而,在大型分布式系统中执行这种端到端成对测量,同时达到高精度并避免干扰现有流量是具有挑战性的。在终端主机上,测量会引起它们之间和其他过程之间的干扰,从而使机器过载。在网络中,来自不同主机的测量报文可能相互干扰,也可能与瓶颈链路上的其他流量产生干扰。在本文中,我们提出了一个监控终端主机和网络资源的系统,并根据观察到的负载调整测量次数。我们的方案通过仅测量一小部分网络路径并从部分间接测量中重建整个网络路径属性来避免干扰。PlanetLab的仿真实验和实际测试表明,我们的路径选择算法在资源约束下不会影响推理的准确性,并且我们的系统可以有效地适应终端主机资源使用情况的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time End-to-end Network Monitoring in Large Distributed Systems
Measuring real-time end-to-end network path performance metrics is important for several distributed applications such as media streaming systems (e.g., for switching to paths with higher bandwidth and lower jitter) and content distribution systems (e.g., for selecting servers with lower latency). However, it is challenging to perform such end-to-end pairwise measurements in large distributed systems while achieving high accuracy and avoid interfering with existing traffic. On the end hosts, the measurements can overload the machine by causing interference among themselves and other processes. On the network, the measurement packets from different hosts can interfere among themselves and with other flows on bottleneck links. In this paper, we propose a system to monitor end-host and network resources and adapt the number of measurements according to the observed load. Our scheme avoids interference by measuring only a small subset of network paths and reconstructing the entire network path properties from the partial, indirect measurements. Our simulation experiments and real testbed experiments on PlanetLab show that our path selection algorithm working with resource constraints does not adversely affect the accuracy of inference and our system can effectively adapt to the changing resource usage at the end hosts.
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