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PROGENIA: An Approach for Grid Interoperability at Workflow Level

机译:PROGENIA:一种工作流级别的网格互操作性方法

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This paper addresses the problem of simulating complex large-scale experiments by using the PROGENIA WorkFlow Management System (WFMS), developed in the ProGenGrid (Proteomics and Genomics Grid) research project at the University of Salento, deployed and tested in a real Grid-based Problem Solving Environment for Bioin-formatics named LIBI (International Laboratory of Bioinformatics). PROGENIA aims to achieve interoperability at workflow level, supporting the deployment of a workflow on different Grids based on Globus, gLite and Unicore middlewares. By using specific adapters, the workflow engine acts as a meta scheduler, submitting the jobs on different grids. The meta scheduler selects the available resources from a list of resources, previously configured by the PROGENIA administrator, by using the interfaces of the PROGENIA editor to configure a grid (Users admin, Virtual Organization, Resource and Software Management). PROGENIA will allow domain researchers to share and reuse their scientific workflows across distributed computing infrastructure. PROGENIA has been tested in several Bioinformatics case studies. In particular a test case related to the protein multi-alignment, executed on gLite and Globus middleware will be presented.
机译:本文解决了使用Progenia工作流管理系统(WFMS)模拟复杂的大规模实验的问题,该系统是在Salento大学的ProGenGrid(蛋白质组学和基因组学网格)研究项目中开发的,并在基于Grid的真实网格中进行了部署和测试生物信息学的问题解决环境,名为LIBI(国际生物信息学实验室)。 PROGENIA旨在实现工作流级别的互操作性,支持在基于Globus,gLite和Unicore中间件的不同Grid上部署工作流。通过使用特定的适配器,工作流引擎充当元调度程序,在不同的网格上提交作业。元调度程序通过使用PROGENIA编辑器的界面来配置网格(用户admin,虚拟组织,资源和软件管理),从PROGENIA管理员先前配置的资源列表中选择可用资源。 PROGENIA将允许领域研究人员在分布式计算基础架构之间共享和重用其科学工作流程。 PROGENIA已在多个生物信息学案例研究中进行了测试。特别是将介绍在gLite和Globus中间件上执行的与蛋白质多重比对相关的测试用例。

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