ISP骨干网中时间驱动的链路休眠重构优化

Frédéric François, Ning Wang, K. Moessner, S. Georgoulas
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引用次数: 19

摘要

骨干网的能源效率最近成为互联网服务提供商和监管机构关注的主要问题。在这种环境下,常见的节能解决方案包括重新配置休眠模式和在流量较低时对网络设备进行速率调整。已经观察到,许多ISP网络表现出规律的流量动态模式,可以用于实际的时间驱动的链路休眠配置。在这项工作中,我们提出了一种联合优化算法来计算简化后的网络拓扑及其在日常运行中的实际配置时间。主要思想是首先使用贪婪启发式算法智能地删除网络链路,而不会在非高峰时段造成网络拥塞。然后,应用鲁棒算法确定简化拓扑的配置持续时间的窗口大小,确保可以在每天的同一时间段精确执行具有优化能效性能的统一配置。我们的算法使用GÉANT网络的存在点表示及其真实流量矩阵进行评估。根据我们的仿真结果,得到的简化后的网络拓扑在这段时间内能够实现18.6%的能量降低,而不会造成明显的网络性能下降。这项工作的贡献是一种实用而有效的ISP网络节能方法,它可以直接部署在传统路由平台上,而不需要任何协议扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization for time-driven link sleeping reconfigurations in ISP backbone networks
Backbone network energy efficiency has recently become a primary concern for Internet Service Providers and regulators. The common solutions for energy conservation in such an environment include sleep mode reconfigurations and rate adaptation at network devices when the traffic volume is low. It has been observed that many ISP networks exhibit regular traffic dynamicity patterns which can be exploited for practical time-driven link sleeping configurations. In this work, we propose a joint optimization algorithm to compute the reduced network topology and its actual configuration duration during daily operations. The main idea is first to intelligently remove network links using a greedy heuristic, without causing network congestion during off-peak time. Following that, a robust algorithm is applied to determine the window size of the configuration duration of the reduced topology, making sure that a unified configuration with optimized energy efficiency performance can be enforced exactly at the same time period on a daily basis. Our algorithm was evaluated using on a Point-of-Presence representation of the GÉANT network and its real traffic matrices. According to our simulation results, the reduced network topology obtained is able to achieve 18.6% energy reduction during that period without causing significant network performance deterioration. The contribution from this work is a practical but efficient approach for energy savings in ISP networks, which can be directly deployed on legacy routing platforms without requiring any protocol extension.
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