Exposing energy-aware capabilities in next generation network devices

R. Bolla, R. Bruschi, F. Davoli, P. Donadio, L. Fialho, M. Collier, A. Lombardo, D. R. Recupero, Vincenzo Riccobene, T. Szemethy
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Abstract

Dynamic power management techniques have been proposed in a number of recent approaches to reduce the energy consumption of telecommunication networks and devices. These techniques aimed at finding an optimal trade off between network performance and energy requirements. Control policies using energy-aware routing and traffic engineering can be used in order to extend these techniques to the whole network. However, the deployment of the energy-aware capabilities of heterogeneous networking is still unsystematic and impractical, as a standardized representation is still missing. To overcome such an issue, we introduce a novel framework, the Green Abstraction Layer (GAL), whose goal is to define a multi-layered abstraction interface for the hardware and physical resources. Within the GAL, energy management actions are directly performed. The GAL can be thus exposed to the platform-independent logical representation commonly used in network control protocols. Given the internal architectural complexity and heterogeneity of many network devices, the GAL approach is based on a hierarchical decomposition, where each level provides an abstract and aggregated representation of internal components. The general GAL architecture is currently under consideration for standardization in ETSI.
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在下一代网络设备中展示能量感知功能
动态电源管理技术已经在最近的一些方法中提出,以减少电信网络和设备的能源消耗。这些技术旨在找到网络性能和能源需求之间的最佳权衡。为了将这些技术扩展到整个网络,可以使用使用能量感知路由和流量工程的控制策略。然而,异构网络的能源感知能力的部署仍然是不系统和不切实际的,因为标准化的表示仍然缺失。为了克服这个问题,我们引入了一个新的框架,绿色抽象层(GAL),其目标是为硬件和物理资源定义一个多层抽象接口。在GAL中,直接执行能量管理操作。因此,可以将GAL暴露给网络控制协议中常用的与平台无关的逻辑表示。考虑到许多网络设备的内部体系结构复杂性和异构性,GAL方法基于分层分解,其中每个级别提供内部组件的抽象和聚合表示。通用的GAL架构目前正在考虑ETSI的标准化。
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