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Exposing HPC and sequential applications as services through the development and deployment of a SaaS cloud

机译:通过SaaS云的开发和部署将HPC和顺序应用程序作为服务公开

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Cloud and service computing has started to change the way research in science, in particular biology and medicine, is being carried out. Researchers that have taken advantage of this technology (making use of public and private cloud compute resources) can process large amounts of data (big data) and speed up discovery. However, this requires researchers to acquire a solid knowledge and skills in the development of sequential and high performance computing (HPC), and cloud development and deployment background. In response a technology exposing HPC applications as services through the development and deployment of a SaaS cloud, and its proof of concept in the form of implementation of a cloud environment, Uncinus, has been developed and implemented to allow researchers easy access to cloud computing resources. The new technology offers and Uncinus supports the development of applications as services and the sharing of compute resources to speed up applications' execution. Users access these cloud resources and services through web interfaces. Using the Uncinus platform, a bio-informatics workflow was executed on a private (HPC) cloud, server and public cloud (Amazon EC2) resources, performance results showing a 3 fold improvement compared to local resources' performance. Biology and medicine specialists with no programming and application deployment on clouds background could run the case study applications with ease.
机译:云计算和服务计算已经开始改变科学研究的方式,特别是生物学和医学。利用这项技术(利用公共和私有云计算资源)的研究人员可以处理大量数据(大数据)并加快发现速度。但是,这要求研究人员在顺序和高性能计算(HPC)的开发以及云开发和部署背景方面获得扎实的知识和技能。为了响应通过SaaS云的开发和部署将HPC应用程序作为服务公开的技术,以及以实施云环境Uncinus的形式进行的概念验证,已经开发和实施,以使研究人员可以轻松访问云计算资源。 。新技术提供了Uncinus支持作为服务的应用程序开发以及计算资源共享,以加快应用程序的执行。用户通过Web界面访问这些云资源和服务。使用Uncinus平台,在私有(HPC)云,服务器和公共云(Amazon EC2)资源上执行了生物信息学工作流程,与本地资源的性能相比,性能结果显示提高了3倍。无需在云背景上进行编程和应用程序部署的生物学和医学专家可以轻松运行案例研究应用程序。

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