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Energy - Efficient IaaS-PaaS Co-Design for Flexible Cloud Deployment of Scientific Applications

机译:能源-高效的IaaS-PaaS协同设计,可实现科学应用程序的灵活云部署

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Reducing the massive amount of energy consumed by cloud datacenters becomes of major importance. In the usual approach where resources are consolidated into fewer servers in order to power down the others, it still remains periods of time when servers are not fully utilized. Consequently, it exists unused resources that are not exploited although they could be used to execute applications compatible with the variable availability of these resources. In this work, we propose a cloud system where the Platform-as-a-Service (PaaS) and Infrastructure-as-a-Service (IaaS) layers interact to find execution trade-offs that exploit the unused resources at IaaS level. PaaS users are involved in the energy optimization by proposing to delay their executions and adapt resource sizes in order to fit with the available unused resources. Our evaluation by simulation is based on real data and expresses a realistic large scale cloud scenario. Results show that according to the proportion of energy-aware users, this system is able to reduce the amount of servers by using resources that would have been wasted otherwise. Therefore, our solution allows datacenters to consume less energy than with usual resource managers where all applications start their execution at submission time with their initial resource size.
机译:减少云数据中心消耗的大量能源变得至关重要。在通常的方法中,将资源合并到较少的服务器中以关闭其他服务器的电源,但是仍然有一段时间未充分利用服务器。因此,它存在未被利用的未使用资源,尽管它们可用于执行与这些资源的可变可用性兼容的应用程序。在这项工作中,我们提出了一个云系统,在该系统中,平台即服务(PaaS)和基础架构即服务(IaaS)层进行交互,以找到在IaaS级别利用未使用资源的执行权衡。 PaaS用户通过建议延迟执行并调整资源大小以适应可用的未使用资源来参与能源优化。我们的仿真评估基于真实数据,并表达了现实的大规模云方案。结果表明,根据能源敏感用户的比例,该系统能够通过使用原本会浪费的资源来减少服务器数量。因此,我们的解决方案使数据中心消耗的能量比通常的资源管理器少,后者的所有应用程序均在提交时以其初始资源大小开始执行。

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