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Design of green optical networks with signal quality guarantee

机译:保证信号质量的绿色光网络设计

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Energy consumption of communication networks is growing very fast due to the rapidly increasing traffic demand. Consequently, design of green communication networks gained a lot of attention. In this paper we focus on optical Wavelength Division Multiplexing (WDM) networks, able to support this growing traffic demand. Several energy-aware routing and wavelength assignment (EA-RWA) techniques have been proposed for WDM networks in order to minimize their operational cost. These techniques aim at minimizing the number of active links by packing the traffic as much as possible, thus avoiding the use of lightly loaded links. As a result, EA-RWA techniques may lead to longer routes and to a high utilization on some specific links. This has a detrimental effect on the signal quality of the optical connections, i.e., lightpaths. In this study we quantify the impact of power consumption minimization on the optical signal quality. and address this problem by proposing a combined impairment and energy-aware RWA (IEA-RWA) approach. Towards this goal we developed a complete mathematical model that incorporates both linear and non-linear physical impairments together with an energy efficiency objective. The IEA-RWA problem is formulized as a Mixed Integer Linear Programming (MILP) model where both energy efficiency and signal quality considerations are jointly optimized. By comparing the proposed IEA-RWA approach with existing RWA (IA-RWA and EA-RWA) schemes, we demonstrate that our solution allows for a reduction of energy consumption close to the one obtained by EA-RWA approaches, while still guaranteeing a sufficient level of the optical signal quality.
机译:由于流量需求的快速增长,通信网络的能耗增长非常快。因此,绿色通信网络的设计倍受关注。在本文中,我们专注于能够支持这种不断增长的流量需求的光波分复用(WDM)网络。为了最小化其运营成本,已经提出了几种针对WDM网络的能量感知路由和波长分配(EA-RWA)技术。这些技术旨在通过尽可能多地打包流量来最大程度地减少活动链接的数量,从而避免使用轻载链接。结果,EA-RWA技术可能导致更长的路由并导致某些特定链路上的利用率很高。这对光学连接即光路的信号质量具有有害影响。在这项研究中,我们量化了功耗最小化对光信号质量的影响。并通过提出综合的减损和能量感知RWA(IEA-RWA)方法来解决此问题。为了实现这一目标,我们开发了一个完整的数学模型,将线性和非线性物理损伤与能效目标结合在一起。 IEA-RWA问题被公式化为混合整数线性规划(MILP)模型,在该模型中,能源效率和信号质量方面的考虑共同得到优化。通过将提议的IEA-RWA方法与现有RWA(IA-RWA和EA-RWA)方案进行比较,我们证明了我们的解决方案可以将能耗降低到接近EA-RWA方法获得的能耗,同时仍然保证了足够的能耗。光信号质量等级。

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