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首页> 外文期刊>Parallel and Distributed Systems, IEEE Transactions on >LEISURE: Load-Balanced Network-Wide Traffic Measurement and Monitor Placement
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LEISURE: Load-Balanced Network-Wide Traffic Measurement and Monitor Placement

机译:休闲:负载均衡的网络范围的流量测量和监视器放置

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摘要

Network-wide traffic measurement is of interest to network operators to uncover global network behavior for the management tasks of traffic accounting, debugging or troubleshooting, security, and traffic engineering. Increasingly, sophisticated network measurement tasks such as anomaly detection and security forensic analysis are requiring in-depth fine-grained flow-level measurements. However, performing in-depth per-flow measurements (e.g., detailed payload analysis) is often an expensive process. Given the fast-changing Internet traffic landscape and large traffic volume, a single monitor is not capable of accomplishing the measurement tasks for all applications of interest due to its resource constraint. Moreover, uncovering global network behavior requires network-wide traffic measurements at multiple monitors across the network since traffic measured at any single monitor only provides a partial view and may not be sufficient or accurate. These factors call for coordinated measurements among multiple distributed monitors. In this paper, we present a centralized optimization framework, LEISURE (Load- EqualIzed mea SUREment), for load-balancing network measurement workloads across distributed monitors. Specifically, we consider various load-balancing problems under different objectives and study their extensions to support both fixed and flexible monitor deployment scenarios. We formulate the latter flexible monitor deployment case as an MILP (Mixed Integer Linear Programming) problem and propose several heuristic algorithms to approximate the optimal solution and reduce the computation complexity. We evaluate LEISURE via detailed simulations on Abilene and GEANT network traces to show that LEISURE can achieve much better load-balanced performance (e.g., 4.75 smaller peak workload and 70 smaller variance in workloa- s) across all coordinated monitors in comparison to a naive solution (uniform assignment) to accomplish network-wide traffic measurement tasks under the fixed monitor deployment scenario. We also show that under the flexible monitor deployment setting, our heuristic solutions can achieve almost the same load-balancing performance as the optimal solution while reducing the computation times by a factor up to 22.5 in Abilene and 800 in GEANT.
机译:网络运营商希望发现网络范围的流量,以发现流量统计,调试或故障排除,安全性和流量工程等管理任务的全局网络行为。复杂的网络测量任务(例如异常检测和安全取证分析)越来越需要深入的细粒度流量水平测量。然而,执行深入的每流测量(例如,详细的有效载荷分析)通常是昂贵的过程。考虑到Internet流量格局的快速变化和大流量,单个监视器由于其资源限制而无法完成所有感兴趣的应用程序的测量任务。此外,要发现全球网络行为,需要在整个网络的多个监视器上进行全网流量测量,因为在任何单个监视器上测量的流量都只能提供部分视图,可能不够充分或不准确。这些因素要求在多个分布式监视器之间进行协调的测量。在本文中,我们提出了一个集中式优化框架LEISURE(负载均衡措施),用于跨分布式监视器的负载均衡网络测量工作负载。具体来说,我们考虑了不同目标下的各种负载平衡问题,并研究了它们的扩展以支持固定和灵活的监视器部署方案。我们将后一种灵活的监控器部署情况公式化为MILP(混合整数线性规划)问题,并提出了几种启发式算法来逼近最佳解决方案并降低计算复杂性。通过对Abilene和GEANT网络跟踪进行详细的仿真,我们评估了LEISURE,表明与单纯的解决方案相比,LEISURE可以在所有协调的监视器上实现更好的负载平衡性能(例如,峰值工作负载减少4.75倍,工作量差异减少70倍) (统一分配)以完成固定监控器部署方案下的全网络流量测量任务。我们还表明,在灵活的监视器部署设置下,我们的启发式解决方案可以实现与最佳解决方案几乎相同的负载均衡性能,同时将计算时间减少多达22.5倍(在Abilene中为200倍)和在GEANT中为800倍。

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