A framework for preparing experimental evaluation of rerouting mechanisms

R. B. Correia, L. Carmo, L. Pirmez, L. Bacellar
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Abstract

Among the various QoS schemes that have already been proposed, rerouting critical flows is the most promising for its inherent ability to interface easily with management systems. To enhance the responsiveness, the operations performed by rerouting mechanisms should be done pro-actively. A pro-active network management using rerouting mechanisms was proposed by Correia et al., (2003). Recently, the proposed approach was selected to be deployed in an experimental fiber-optic gigabit backbone (GIGA project - sponsored by the Brazilian Research Network - RNP). The fundamental problem is how to specify critical factors and to develop a consistent set of tests for a complete field evaluation of the implementation. The constraints associated with this process are reduced deployment time and restricted availability of the network infrastructure for testing. This paper discusses a framework for deploying the rerouting mechanisms proposed by Correia et al. (2003) using DOE (design of experiments) analysis (Phadke). It is shown how rapidly some conclusions about performance, stability and interdependence upon the selection of design parameters can be taken through the use of DOE. Basically, MatLab models have been used to support the DOE analysis. This paper shows how the use of simple two and three-level factorial experimental designs can rapidly increase the designer's knowledge about the behavior of the mechanisms being studied.
准备对改道机制进行实验评估的框架
在已经提出的各种QoS方案中,重路由关键流是最有希望的,因为它具有与管理系统轻松交互的固有能力。为了增强响应性,应该主动地执行由重路由机制执行的操作。Correia等人(2003)提出了一种使用重路由机制的主动网络管理方法。最近,提议的方法被选择部署在一个实验光纤千兆骨干网(GIGA项目-由巴西研究网络- RNP赞助)中。根本问题是如何确定关键因素并制定一套一致的测试,以便对执行情况进行全面的实地评估。与此过程相关的约束是减少部署时间和限制用于测试的网络基础设施的可用性。本文讨论了Correia等人(2003)使用DOE(实验设计)分析(Phadke)提出的部署重路由机制的框架。通过使用DOE,可以迅速得出有关性能、稳定性和依赖于设计参数选择的一些结论。基本上,MatLab模型已经被用来支持DOE分析。本文展示了如何使用简单的二水平和三水平析因实验设计可以迅速增加设计者对所研究机制的行为的了解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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