Adaptive real-time monitoring for large-scale networked systems

A. Prieto, R. Stadler
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引用次数: 15

Abstract

The focus of this thesis is continuous real-time monitoring, which is essential for the realization of adaptive management systems in large-scale dynamic environments. Real-time monitoring provides the necessary input to the decision-making process of network management. We have developed, implemented, and evaluated a design for real-time continuous monitoring of global metrics with performance objectives, such as monitoring overhead and estimation accuracy. Global metrics describe the state of the system as a whole, in contrast to local metrics, such as device counters or local protocol states, which capture the state of a local entity. Global metrics are computed from local metrics using aggregation functions, such as SUM, AVERAGE and MAX. A key part in the design is a model for the distributed monitoring process that relates performance metrics to parameters that tune the behavior of a monitoring protocol. The model has been instrumental in designing a monitoring protocol that is controllable and achieves given performance objectives. Our design has proved to be effective in meeting performance objectives, efficient, adaptive to changes in the networking conditions, controllable along different performance dimensions, and scalable. We have implemented a prototype on a testbed of commercial routers, which proves the feasibility of the design, and, more generally, the feasibility of effective and efficient real-time monitoring in large network environments.
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大规模网络系统的自适应实时监控
连续实时监测是实现大规模动态环境下自适应管理系统的关键。实时监测为网络管理的决策过程提供了必要的输入。我们已经开发、实现并评估了一种设计,用于实时连续监视具有性能目标的全局度量,例如监视开销和估计准确性。全局指标描述系统的整体状态,与本地指标(如设备计数器或本地协议状态)相反,后者捕获本地实体的状态。使用聚合函数(如SUM、AVERAGE和MAX)从本地度量计算全局度量。设计中的一个关键部分是分布式监控流程的模型,该模型将性能指标与调优监控协议行为的参数联系起来。该模型有助于设计可控制的监控协议并实现给定的性能目标。我们的设计已被证明在满足性能目标方面是有效的,高效的,适应网络条件的变化,在不同的性能维度上是可控的,并且是可扩展的。我们已经在商用路由器的测试平台上实现了一个原型,证明了设计的可行性,更广泛地说,在大型网络环境中进行有效、高效的实时监控的可行性。
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