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Remote Internet Access to Advanced Analytical Facilities: A New Approach with Web-Based Services

机译:对高级分析设施的远程Internet访问:基于Web的服务的新方法

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摘要

Over the past decade, the increasing availability of the World Wide Web has held out the possibility that the efficiency of scientific measurements could be enhanced in cases where experiments were being conducted at distant facilities. Examples of early successes have included X-ray diffraction (XRD) experimental measurements of protein crystal structures at synchrotrons and access to scanning electron microscopy (SEM) and NMR facilities by users from institutions that do not possess such advanced capabilities. Experimental control, visual contact, and receipt of results has used some form of X forwarding and/or VNC (virtual network computing) software that transfers the screen image of a server at the experimental site to that of the users' home site. A more recent development is a web services platform called Science Studio that provides teams of scientists with secure links to experiments at one or more advanced research facilities. The software provides a widely distributed team with a set of controls and screens to operate, observe, and record essential parts of the experiment. As well, Science Studio provides high speed network access to computing resources to process the large data sets that are often involved in complex experiments. The simple web browser and the rapid transfer of experimental data to a processing site allow efficient use of the facility and assist decision making during the acquisition of the experimental results. The software provides users with a comprehensive overview and record of all parts of the experimental process. A prototype network is described involving X-ray beamlines at two different synchrotrons and an SEM facility. An online parallel processing facility has been developed that analyzes the data in near-real time using stream processing. Science Studio and can be expanded to include many other analytical applications, providing teams of users with rapid access to processed results along with the means for detailed discussion of their significance.
机译:在过去的十年中,万维网的可用性不断提高,因此有可能在遥远的设施进行实验的情况下提高科学测量的效率。早期成功的例子包括同步加速器处蛋白质晶体结构的X射线衍射(XRD)实验测量以及不具备此类先进功能的机构的用户使用扫描电子显微镜(SEM)和NMR设施。实验控制,视觉接触和结果接收已使用某种形式的X转发和/或VNC(虚拟网络计算)软件,该软件将实验站点中服务器的屏幕图像传输到用户本地站点的屏幕图像。最新的开发是称为Science Studio的Web服务平台,该平台为科学家团队提供了到一个或多个高级研究机构的实验的安全链接。该软件为分布广泛的团队提供了一组控件和屏幕,用于操作,观察和记录实验的重要部分。同样,Science Studio还提供对计算资源的高速网络访问,以处理复杂实验中经常涉及的大数据集。简单的Web浏览器和快速将实验数据传输到处理站点,可以有效利用该设施并在获取实验结果期间协助做出决策。该软件为用户提供了实验过程所有部分的全面概述和记录。描述了一个原型网络,其中包括两个不同的同步加速器处的X射线束线和一个SEM设备。已经开发了一种在线并行处理工具,该工具可以使用流处理近乎实时地分析数据。 Science Studio可以进行扩展,以包括许多其他分析应用程序,使用户团队可以快速访问处理后的结果以及详细讨论其重要性的方法。

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