RealityGrid: an integrated approach to middleware through ICENI

RealityGrid: an integrated approach to middleware through ICENI
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RealityGrid:通过 ICENI 实现中间件的集成方法

DOI:
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发表时间:
2005
期刊:
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences
影响因子:
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通讯作者:
J. Darlington
J. Darlington
中科院分区:
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文献类型:
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作者:
Jeremy Cohen;N. Furmento;Gary Kong;A. Mayer;S. Newhouse;J. Darlington

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在复杂的科学应用中,建模和模拟的进步目前受到从所产生的数据中提取知识的速度的限制。随着网格计算的发展,人们正在探索提高数据分析效率的新方法。RealityGrid旨在使凝聚态物质,材料和生物科学社区内的科学计算资源得到更有效的利用。帝国理工学院电子科学网络基础设施(ICENI)网格中间件提供了一个端到端的管道,简化了计算,仿真和协作的阶段。这项工作的目的是让所有科学家都能接触到这些特征,而不需要像过去那样付出巨大的努力。科学家可以利用先进的调度机制来确保高效的计算规划,可视化和交互式地引导模拟,并通过单个集成的中间件应用程序通过Access Grid与同事安全地协作。
The advancement of modelling and simulation within complex scientific applications is currently constrained by the rate at which knowledge can be extracted from the data produced. As Grid computing evolves, new means of increasing the efficiency of data analysis are being explored. RealityGrid aims to enable more efficient use of scientific computing resources within the condensed matter, materials and biological science communities. The Imperial College e-Science Networked Infrastructure (ICENI) Grid middleware provides an end-to-end pipeline that simplifies the stages of computation, simulation and collaboration. The intention of this work is to allow all scientists to have access to these features without the need for heroic efforts that have been associated with this sort of work in the past. Scientists can utilise advanced scheduling mechanisms to ensure efficient planning of computations, visualize and interactively steer simulations and securely collaborate with colleagues via the Access Grid through a single integrated middleware application.