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首页> 外文期刊>Network and Service Management, IEEE Transactions on >Optimizing Link Sleeping Reconfigurations in ISP Networks with Off-Peak Time Failure Protection
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Optimizing Link Sleeping Reconfigurations in ISP Networks with Off-Peak Time Failure Protection

机译:利用非峰值时间故障保护优化ISP网络中的链路休眠重新配置

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摘要

Energy consumption in ISP backbone networks has been rapidly increasing with the advent of increasingly bandwidth-hungry applications. Network resource optimization through sleeping reconfiguration and rate adaptation has been proposed for reducing energy consumption when the traffic demands are at their low levels. It has been observed that many operational backbone networks exhibit regular diurnal traffic patterns, which offers the opportunity to apply simple time-driven link sleeping reconfigurations for energy-saving purposes. In this work, an efficient optimization scheme called Time-driven Link Sleeping (TLS) is proposed for practical energy management which produces an optimized combination of the reduced network topology and its unified off-peak configuration duration in daily operations. Such a scheme significantly eases the operational complexity at the ISP side for energy saving, but without resorting to complicated online network adaptations. The GéANT network and its real traffic matrices were used to evaluate the proposed TLS scheme. Simulation results show that up to 28.3% energy savings can be achieved during off-peak operation without network performance deterioration. In addition, considering the potential risk of traffic congestion caused by unexpected network failures based on the reduced topology during off-peak time, we further propose a robust TLS scheme with Single Link Failure Protection (TLS-SLFP) which aims to achieve an optimized trade-off between network robustness and energy efficiency performance.
机译:随着带宽需求日益增加的应用的出现,ISP骨干网络中的能耗已迅速增加。已经提出了通过睡眠重新配置和速率适配的网络资源优化,以在业务需求处于较低水平时减少能耗。已经观察到,许多可运行的骨干网表现出规律的昼夜流量模式,这为应用以节能为目的的简单时间驱动链路休眠重新配置提供了机会。在这项工作中,针对实际的能源管理,提出了一种称为时间驱动链路休眠(TLS)的有效优化方案,该方案可在日常操作中产生简化网络拓扑及其统一的非高峰配置持续时间的优化组合。这样的方案显着减轻了ISP端的节能操作复杂性,但又不求助于复杂的在线网络适配。 GéANT网络及其实际流量矩阵用于评估建议的TLS方案。仿真结果表明,在非高峰运行期间可以节省多达28.3%的能量,而不会降低网络性能。此外,考虑到由于非高峰时间拓扑减少而导致的意外网络故障导致的流量拥塞的潜在风险,我们进一步提出了一种具有单链路故障保护(TLS-SLFP)的健壮TLS方案,旨在实现最佳交易网络健壮性和能源效率性能之间的差异。

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