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Real-time remote diagnostic monitoring test-bed in JET

机译:JET中的实时远程诊断监控测试台

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摘要

Based on the remote experimentation concept oriented to long pulse shots, a test-bed system has been implemented in JET. Its main functionality is the real-time monitoring, on remote, of a reflectometer diagnostic, to visualize different data outputs and status information. The architecture of the system is formed by: the data generator components, the data distribution system, an access control service, and the client applications. In the test-bed there is one data generator, which is the acquisition equipment associated with the reflectometer diagnostic that generates data and status information. The data distribution system has been implemented using a publishing-subscribing technology that receives data from data generators and redistributes them to client applications. And finally, for monitoring, a client application based on JAVA Web Start technology has been used.rnThere are three interesting results from this project. The first one is the analysis of different aspects (data formats, data frame rate, data resolution, etc) related with remote real-time diagnostic monitoring oriented to long pulse experiments. The second one is the definition and implementation of an architecture, flexible enough to be applied to different types of data generated from other diagnostics, and that fits with remote access requirements. Finally, the third result is a secure system, taking into account internal networks and firewalls aspects of JET, and securing the access from remote users. For this last issue, PAPI technology has been used, enabling access control based on user attributes, enabling mobile users to monitor diagnostics in real-time, and enabling the integration of this service into the EFDA Federation (Castro etal., 2008 [1]).
机译:基于面向长脉冲发射的远程实验概念,在JET中实现了一个试验台系统。其主要功能是对反射仪诊断进行远程实时监控,以可视化不同的数据输出和状态信息。该系统的体系结构由以下各项组成:数据生成器组件,数据分发系统,访问控制服务和客户端应用程序。在测试台上有一个数据生成器,它是与反射仪诊断程序关联的采集设备,可生成数据和状态信息。数据发布系统已使用发布订阅技术实现,该发布订阅技术从数据生成器接收数据并将其重新分发给客户端应用程序。最后,为了进行监视,使用了基于JAVA Web Start技术的客户端应用程序。该项目有三个有趣的结果。第一个是分析与面向长脉冲实验的远程实时诊断监视相关的不同方面(数据格式,数据帧速率,数据分辨率等)。第二个是架构的定义和实现,该架构足够灵活,可以应用于从其他诊断程序生成的不同类型的数据,并且符合远程访问要求。最后,第三个结果是一个安全的系统,其中考虑了JET的内部网络和防火墙方面,并保护了远程用户的访问。对于最后一个问题,使用了PAPI技术,该技术可基于用户属性进行访问控制,使移动用户能够实时监控诊断,并将此服务集成到EFDA联合会中(Castro等,2008 [1]。 )。

著录项

  • 来源
    《Fusion Engineering and Design》 |2010年第4期|P.598-602|共5页
  • 作者单位

    Asociacion EURATOM/CIEMAT para Fusion, Madrid, Spain;

    rnEURATOM/UKAEA Fusion Association, Culham Science Centre, Abingdon, OX14 3DB, UK;

    rnAsociacion EURATOM/CIEMAT para Fusion, Madrid, Spain;

    rnUniversidad Politecnica de Madrid, Grupo I2A2, Madrid, Spain;

    rnUniversidad Politecnica de Madrid, Grupo I2A2, Madrid, Spain;

    rnEURATOM/UKAEA Fusion Association, Culham Science Centre, Abingdon, OX14 3DB, UK;

    rnAssociazione EURATOM-ENEA per la Fusione, Consorzio RFX, 4-35127 Padova, Italy;

    rnAssociacao EURATOM/IST. Lisbon, Portugal;

    rnAsociacion EURATOM/CIEMAT para Fusion, Madrid, Spain;

    rnAsociacion EURATOM/CIEMAT para Fusion, Madrid, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    monitoring; remote; real-time; diagnostic; streaming;

    机译:监控;远程;即时的;诊断;流式;

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