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Energy-efficient resource-provisioning algorithms for optical clouds

机译:光学云的高效节能资源调配算法

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摘要

Rising energy costs and climate change have led to an increased concern for energy efficiency (EE). As information and communication technology is responsible for about 4% of total energy consumption worldwide, it is essential to devise policies aimed at reducing it. In this paper, we propose a routing and scheduling algorithm for a cloud architecture that targets minimal total energy consumption by enabling switching off unused network and/or information technology (IT) resources, exploiting the cloud-specific anycast principle. A detailed energy model for the entire cloud infrastructure comprising a wide-area optical network and IT resources is provided. This model is used to make a single-step decision on which IT end points to use for a given request, including the routing of the network connection toward these end points. Our simulations quantitatively assess the EE algorithm's potential energy savings but also assess the influence this may have on traditional quality-of-service parameters such as service blocking. Furthermore, we compare the one-step scheduling with traditional scheduling and routing schemes, which calculate the resource provisioning in a two-step approach (selecting first the destination IT end point and subsequently using unicast routing toward it). We show that depending on the offered infrastructure load, our proposed one-step calculation considerably lowers the total energy consumption (reduction up to 50%) compared to the traditional iterative scheduling and routing, especially in low- to medium-load scenarios, without any significant increase in the service blocking.
机译:不断上涨的能源成本和气候变化已引起人们对能源效率(EE)的日益关注。由于信息和通信技术约占全球总能耗的4%,因此制定旨在降低能耗的政策至关重要。在本文中,我们提出了一种针对云体系结构的路由和调度算法,该算法通过利用特定于云的任播原理来关闭未使用的网络和/或信息技术(IT)资源,从而将总能耗降至最低。提供了包含整个区域的光网络和IT资源的整个云基础架构的详细能源模型。该模型用于对要用于给定请求的IT端点进行单步决策,包括将网络连接路由到这些端点。我们的仿真定量评估了EE算法的潜在节能效果,但也评估了它对传统服务质量参数(如服务阻塞)的影响。此外,我们将单步调度与传统的调度和路由方案进行了比较,后者采用两步法(首先选择目标IT端点,然后使用向其的单播路由)计算资源配置。我们表明,根据所提供的基础架构负载,与传统的迭代调度和路由相比,我们建议的一步计算可显着降低总能耗(减少多达50%),尤其是在中低负荷情况下,服务阻塞的显着增加。

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