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Overcoming Engineering Challenges of Providing an Effective User Interface to a Large Scale Distributed Synthetic Environment on the US Teragrid: A Systems Engineering Success Story

机译:克服在美国Teragrid上为大型分布式合成环境提供有效用户界面的工程挑战:系统工程成功案例

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Over recent years large scale distributed synthetic environment enterprises have been evolving in a diverse range of scientific and engineering fields. These computer modelling and simulation systems are increasing in scale and dimension in order to allow scientists and engineers to explore the attributes and emergent properties of a given system design. Within the field of computational science the grid has been developed to facilitate very large scale collaborative simulation enterprises. The grid is similar to DIS/HLA in that it supports interconnectivity but differs in the sense that it supports intercommunication of large super computing resources. An important factor in the rapid adoption of the grid has been its role in enabling access to significant supercomputing resources not usually available at a single institution. However, the major challenge for the grid has been the lack of an effective and ubiquitous interface to the huge computational resource (which can comprise over 6000 CPUs distributed across the globe) at any time and from any location. This paper describes a unique user interface built on systems engineering principles and practices to solve the problem of delivering real-time interaction (from lightweight computing devices such as PDAs to high end computing platforms) with simulations delivering high resolution 3D images. The application of our work is likely to have far reaching benefits for many sectors including: aerospace, medical informatics, engineering design, distributed simulation and modelling.
机译:近年来,大型分布式合成环境企业已经在各种科学和工程领域中发展。这些计算机建模和仿真系统的规模和尺寸都在不断增加,以使科学家和工程师能够探索给定系统设计的属性和新兴属性。在计算科学领域内,已经开发了网格以促进非常大规模的协作仿真企业。网格与DIS / HLA相似,因为它支持互连性,但是在意义上说它支持大型超级计算资源的互通。快速采用网格的一个重要因素是其在使人们能够访问通常在单个机构中无法获得的大量超级计算资源中的作用。但是,网格面临的主要挑战是在任何时间和任何地点都缺乏对庞大的计算资源(可能包含遍布全球的6000多个CPU)的有效且无处不在的接口。本文介绍了一种基于系统工程原理和实践的独特用户界面,以解决通过提供高分辨率3D图像的仿真来交付实时交互(从PDA等轻型计算设备到高端计算平台)的问题。在许多领域,我们的工作应用可能会产生深远的好处,包括:航空航天,医学信息学,工程设计,分布式仿真和建模。

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