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首页> 外文期刊>The international arab journal of information technology >Improving Energy Efficiency and Impairing Environmental Impacts on Cloud Centers by Transforming Virtual Machine into Self-Adaptive Resource Container
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Improving Energy Efficiency and Impairing Environmental Impacts on Cloud Centers by Transforming Virtual Machine into Self-Adaptive Resource Container

机译:通过将虚拟机转变为自适应资源容器来提高能源效率并减轻对云中心的环境影响

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Enterprises are seeking on-demand computing models that can be employed with better utilization and reduced operational cost by remitting up to the users' needs; this brings up zero charges as zero demand exhibits because user demands are vary drastically over time. To reinforce dynamic resource provision, service providers have to maintain more computational resources than needed. Meanwhile, the IT sector has more apprehensions about the impact on the environment due to an increase in carbon dioxide emissions, higher electricity consumption and a growth in the electronic wastes from electronic components. Most of the research works focus primarily on the expertise required for providing the needed resources and not care on resource utilized which brings unsustainability. To achieve sustainable computing, unwanted installation of contemporary computational resources should be rolled up and better sharing options should be made available. This paper proposes new virtualization techniques which engage cloud services exclusively between host and guest operating environments. By doing so, this mechanism stands as the best crossover with other working engines and provide open service to execute any type of applications on it. Finally, the combination of cloud service and virtualization enables container features with efficient utilization factor. Most probably, a proper combination of these resources solves any computational issues so these two resource mechanism's always standing on the top of the change. This experiment analysis aims to compare the performance of container with virtual machine based container in an adopted infrastructure via cloud simulator. And the result of better efficiency metrics attained by virtual based container were explored and plotted.
机译:企业正在寻求可以满足用户需求的按需计算模型,以提高利用率并降低运营成本。由于用户需求随时间急剧变化,因此随着零需求的出现,这带来了零费用。为了加强动态资源供应,服务提供商必须维护比所需更多的计算资源。同时,由于二氧化碳排放量的增加,电力消耗的增加以及电子部件产生的电子废物的增加,IT部门对环境的影响有了更多的担忧。大多数研究工作主要集中在提供所需资源所需的专业知识上,而不在乎带来不可持续性的资源利用。为了实现可持续的计算,应该汇总不需要的当代计算资源,并提供更好的共享选项。本文提出了新的虚拟化技术,这些技术专门在主机和来宾操作环境之间使用云服务。这样,该机制是与其他工作引擎的最佳交叉,并提供开放服务以在其上执行任何类型的应用程序。最后,云服务和虚拟化的结合使容器功能具有高利用率。这些资源的适当组合很可能会解决所有计算问题,因此这两种资源机制始终处于变化的顶端。该实验分析旨在通过云模拟器在采用的基础架构中比较容器与基于虚拟机的容器的性能。并探索并绘制了基于虚拟容器的更好效率指标的结果。

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