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Caching in green IP over WDM networks

机译:通过WDM网络缓存绿色IP

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Increasing popularity of media-rich Internet content and the associated growth in power consumption have highlighted the need for energy efficient content distribution schemes. This paper investigates the power savings introduced by caching content in IP over WDM networks. To carry out the study, we develop a MILP model to minimize the power consumption of cache-based services over an IP over WDM network by optimizing the cache sizes of the network nodes at different times of the day. A Constraint-Based Genetic Algorithm (CBGA) is developed to validate the optimum cache sizes obtained from the MILP model and a simulation based on lightpath bypass validates the power consumption of routing traffic demands. We consider different popularity distributions including the Zipf, Pareto and Bimodal content popularity distributions to exemplify different types of IPTV services. Our results reveal that deploying the optimum variable cache sizes at the nodes reduces the overall network power consumption by up to 42%, 68% and 72% using Zipf, Pareto and Bimodal distributions for content popularity, respectively. We further study the impact of regular cache updates on power efficiency. The results show that removing the 10 most popular objects from caches increases the network power consumption by up to 20%.
机译:富媒体的Internet内容的日益普及以及相关的功耗增长突显了对节能内容分发方案的需求。本文研究了通过WDM网络中的IP缓存内容所带来的节能效果。为了进行这项研究,我们开发了一种MILP模型,通过优化一天中不同时间的网络节点的缓存大小,来最小化基于IP的WDM网络上基于缓存的服务的功耗。开发了一种基于约束的遗传算法(CBGA)以验证从MILP模型获得的最佳高速缓存大小,并且基于光路旁路的仿真可以验证路由流量需求的功耗。我们考虑不同的受欢迎程度分布,包括Zipf,Pareto和Bimodal内容受欢迎程度分布,以举例说明不同类型的IPTV服务。我们的结果表明,使用Zipf,Pareto和Bimodal分发分别实现内容流行,在节点上部署最佳的可变高速缓存大小可分别将总体网络功耗降低多达42%,68%和72%。我们进一步研究了常规缓存更新对电源效率的影响。结果表明,从缓存中删除10个最流行的对象会使网络功耗增加多达20%。

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