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Energy-efficient and cost-efficient capacity upgrade in mixed-line-rate optical networks

机译:混合线速光网络中的节能和经济高效的容量升级

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摘要

Traffic in telecom networks is increasing rapidly, and it has been a challenging task to plan and upgrade network capacities for this increasing traffic, keeping the cost of resources within a targeted budget. Besides handling this drastic growth in traffic, future optical networks are also expected to be increasingly heterogeneous with respect to services supported and underlying technologies employed. To support this heterogeneous volume of traffic, mixed-line-rate (MLR) optical networks with line rates of 10, 40, and 100 Gbps have been shown to be effective. In the case of a greenfield network design, i.e., when planning capacities for a new network, MLR networks have been shown to be cost efficient as well as energy efficient in some recent studies. The concept of an MLR network is evolutionary, starting from a 10G single-line-rate network to a coexistence of multiple line rates in the same network as capacities on some links are periodically upgraded from 10G per wavelength to 40G and 100G per wavelength with traffic growth. Therefore, from a network-upgrade perspective, an important issue is to devise a cost-optimized migration strategy from 10G to 40G to 100G and beyond, given a traffic growth model. However, energy consumption in different elements in the network, especially in those elements whose energy consumption depends on the bandwidth of the traffic that they are handling, is also an important parameter to consider. Therefore, the ultimate question is: Can an MLR be a good candidate for energy-efficient and cost-efficient upgrade? In this study, we investigate the energy-efficient and cost-efficient MLR network-upgrade problem. In this context, we also study the effect of network connection disruption on energy-efficient and cost-efficient MLR network upgrade. In general, the service provider's aim would be to have as few disruptions as possible during capacity upgrade, as disruptions may induce service degradation. Our results show that the amount - f disruptions has a conflicting effect on energy-efficient and cost-efficient upgrade in MLR networks, and we develop an optimized upgrade strategy so that both cost and energy are kept within a certain limit.
机译:电信网络中的流量正在迅速增长,因此,针对这种不断增长的流量进行计划和升级网络容量,将资源成本保持在目标预算范围内,一直是一项艰巨的任务。除了应付这种急剧增长的流量外,未来的光网络在支持的服务和所采用的基础技术方面也将越来越多样化。为了支持这种异构的业务量,线速为10、40和100 Gbps的混合线速(MLR)光网络已被证明是有效的。在绿地网络设计的情况下,即,当规划新网络的容量时,最近的一些研究表明MLR网络既具有成本效益又具有能源效率。 MLR网络的概念是不断发展的,从10G单线速率网络到同一网络中多种线速的共存,因为某些链路上的容量会随着流量的变化从每波长10G定期升级到40G和每波长100G增长。因此,从网络升级的角度来看,一个重要的问题是在给定流量增长模型的情况下,设计一种成本优化的迁移策略,从10G到40G再到100G甚至更高。但是,网络中不同元素的能量消耗,尤其是那些能量消耗取决于其处理的流量带宽的元素,也是要考虑的重要参数。因此,最终的问题是:MLR是否可以成为节能高效且经济高效的升级的理想选择?在这项研究中,我们调查了节能高效的MLR网络升级问题。在这种情况下,我们还研究了网络连接中断对节能高效的MLR网络升级的影响。通常,服务提供商的目标是在容量升级期间尽可能减少中断,因为中断可能会导致服务降级。我们的结果表明,数量-f中断对MLR网络中的节能和经济高效的升级有冲突的影响,并且我们开发了一种优化的升级策略,以使成本和能源都保持在一定范围内。

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