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Optimizing computational resource management for the scientific gateways ecosystems based on the service-oriented paradigm

机译:基于面向服务的范式的科学网关生态系统优化计算资源管理

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Science Gateways provide portals for experiments execution, regardless of the users' computational background. Nowadays its construction and performance need enhancement in terms of resource provision and task scheduling. We present the Modular Distributed Architecture to support the Protein Structure Prediction (MDAPSP), a Service-Oriented Architecture for management and construction of Science Gateways, with resource provisioning on a heterogeneous environment. The Decision Maker, central module of MDAPSP, defines the best computational environment according to experiment parameters. The proof of concept for MDAPSP is presented in WorkflowSim, with two novel schedulers. Our results demonstrate good Quality of Service (QoS), capable of correctly distributing the workload, fair response times, providing load balance, and overall system improvement. The study case relies on PSP algorithms and the Galaxy framework, with monitoring experiments to show the bottlenecks and critical aspects.
机译:无论用户的计算背景如何,科学网关提供实验执行的门户。 如今,在资源提供和任务调度方面需要提高建筑和性能。 我们介绍了模块化分布式架构,以支持蛋白质结构预测(MDAPSP),以服务为导向的管理和施工科学网关,资源供应在异构环境上。 决策者MDAPSP的中央模块定义了根据实验参数的最佳计算环境。 MDAPSP的概念证明呈现在Workflowsim中,有两种新的调度员。 我们的结果表明了良好的服务质量(QoS),能够正确地分配工作量,公平响应时间,提供负载平衡和整体系统改进。 研究案例依赖于PSP算法和银河系框架,监测实验显示瓶颈和关键方面。

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