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An e-Science infrastructure for nanoeletronic simulations based on grid and cloud technologies

机译:基于网格和云技术的纳米型仿真e-Science基础设施

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We propose the development of a new e-Science infrastructure that would take the best of both grid and cloud technologies, and it would allow different research groups that perform nanoelectronic simulations to share their local clusters and create a common infrastructure accessible through a unified point of access. Therefore, more computational power can be used to perform nanoelectronic simulations, with the consequent reduction of time required to obtain the results. The integration of local clusters to share resources, through the proposed cloud management stack, will allow deploying an elastic infrastructure that will also permit to prioritize local computing tasks over shared ones. Furthermore, it will allow not only the deployment of ad-hoc virtual machines across local sites to achieve specific tasks but also to deploy virtual machines in public clouds like Amazon AWS to get additional computing resources, and even avoiding data losing by using public storage clouds like Amazon S3.
机译:我们建议,将采取最好的两个网格和云技术的一个新的e-Science的基础设施的发展,这将允许执行纳米电子模拟不同的研究小组通过一个统一的点分享他们的本地集群和创建访问的通用基础设施使用权。因此,更多的计算能力可以被用于执行纳米电子模拟,随着时间的结果是降低需要获得的结果。本地集群共享资源的整合,通过拟议的云管理堆栈,将允许部署弹性的基础设施,也将允许本地计算任务的优先级在共享的。此外,它不仅可以让临时的虚拟机,在本地站点的部署,以实现特定的任务,而且要在公共云如Amazon AWS部署虚拟机,以获得额外的计算资源,甚至避免数据通过使用公共存储云丢失像亚马逊S3。

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