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Towards Individually Formed Computing Infrastructures with High Throughput and High Performance Computing Resources of Large-scale Grid and e-Science Infrastructures

机译:以高吞吐量和大型电网和电子科学基础设施的高吞吐量和高性能计算资源为单独形成计算基础设施

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The interoperability of e-Science infrastructures like DEISA/PRACE and EGEE/EGI is an increasing demand for a wide variety of cross-Grid applications (EUFORIA, VPH, WISDOM, etc.), but interoperability based on common open standards adopted by Grid middleware is only starting to emerge and is not broadly provided today. In earlier work, we have shown how refined open standards form a reference model, which is based on careful academic analysis of lessons learned obtained from production cross-Grid applications that require access to both, High Throughput Computing (HTC) resources as well as High Performance Computing (HPC) resources. This paper provides insights in several concepts of this reference model with a particular focus on realizing interoperability with the so-called plumbings approach in order to satisfy the different security demands of e-scientists and their cross-Grid applications today and in future. Based on lessons learned over years gained with production interoperability setups and experimental interoperability work between production Grids like EGEE, DEISA, and NorduGrid, we illustrate how open Grid standards (e.g. OGSA-BES, JSDL, GLUE2, and SAML) jointly together with the plumbings concept contribute to the desired vision of a network of interoperable Grid services.
机译:Deisa / Prace和Egee / EGI等电子科学基础设施的互操作性是对各种交叉电网应用(Euforia,VPH,智慧等)的需求越来越大,但基于网格中间件采用的共同开放标准的互操作性今天只是开始出现并没有广泛提供。在早期的工作中,我们已经表明了精制的开放标准如何形成参考模型,这是基于对从生产交叉电网应用程序获得的经验教训的仔细学术分析,这些经验教训是需要访问两者,高吞吐量计算(HTC)资源以及高性能计算(HPC)资源。本文提供了在此参考模型的几个概念中的见解,特别重要地实现了与所谓的管道方法的互操作性,以满足今天和未来的电子科学家及其交叉电网应用的不同安全需求。基于经验教训,通过生产互操作性设置和实验互操作性在EGEE,DEISA和NorduGrid等生产网格之间获得的实验互操作性,我们说明了如何与管道共同开放网格标准(例如OGSA-BES,JSDL,GLUE2和SAML)概念有助于互操作网格服务网络的所需愿景。

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