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ASDEX Upgrade Discharge Control System-A real-time plasma control framework

机译:ASDEX升级排放控制系统-实时等离子体控制框架

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摘要

ASDEX Upgrade is a fusion experiment with a size and complexity to allow extrapolation of technical and physical conditions and requirements to devices like ITER and even beyond. In addressing advanced physics topics it makes extensive use of sophisticated real-time control methods. It comprises real-time diagnostic integration, dynamically adaptable multivariable feedback schemes, actuator management including load distribution schemes and a powerful monitoring and pulse supervision concept based on segment scheduling and exception handling. The Discharge Control System (DCS) supplies all this functionality on base of a modular software framework architecture designed for real-time operation. It provides system-wide services like workflow management, logging and archiving, self-monitoring and inter-process communication on Linux, VxWorks and Solaris operating systems. By default DCS supports distributed computing, and a communication layer allows multi-directional signal transfer and data-driven process synchronisation over shared memory as well as over a number of real-time networks. The entire system is built following the same common design concept combining a rich set of re-usable generic but highly customisable components with a configuration-driven component deployment method. We will give an overview on the architectural concepts as well as on the outstanding capabilities of DCS in the domains of inter-process communication, generic feedback control and pulse supervision. In each of these domains, DCS has contributed important ideas and methods to the on-going design of the ITER plasma control system. We will identify and describe these essential features and illustrate them with examples from ASDEX Upgrade operation.
机译:ASDEX升级是一种融合实验,具有一定规模和复杂性,可以将技术和物理条件以及要求外推到ITER等设备,甚至更高。在解决高级物理主题时,它广泛使用了复杂的实时控制方法。它包括实时诊断集成,动态适应的多变量反馈方案,执行器管理(包括负载分配方案)以及基于段调度和异常处理的强大监视和脉冲监视概念。排放控制系统(DCS)在为实时操作而设计的模块化软件框架体系结构的基础上提供了所有这些功能。它在Linux,VxWorks和Solaris操作系统上提供系统范围的服务,例如工作流管理,日志记录和归档,自我监控以及进程间通信。默认情况下,DCS支持分布式计算,并且通信层允许在共享内存以及许多实时网络上进行多方向信号传输和数据驱动的过程同步。整个系统遵循相同的通用设计概念,将丰富的可重用通用但高度可定制的组件集与配置驱动的组件部署方法结合在一起。我们将对体系结构概念以及DCS在进程间通信,通用反馈控制和脉冲监视等领域的出色功能进行概述。在每个领域中,DCS为ITER等离子体控制系统的持续设计做出了重要的构想和方法。我们将识别并描述这些基本功能,并通过ASDEX升级操作中的示例进行说明。

著录项

  • 来源
    《Fusion Engineering and Design》 |2014年第3期|146-154|共9页
  • 作者单位

    Max-Planck-Institut fuer Plasmaphysik, EURATOM Association, Boltzmannstrasse 2, 85748 Garching, Germany;

    Unlimited Computer Systems GmbH, Iffeldorf, Germany;

    Unlimited Computer Systems GmbH, Iffeldorf, Germany;

    Max-Planck-Institut fuer Plasmaphysik, EURATOM Association, Boltzmannstrasse 2, 85748 Garching, Germany;

    Max-Planck-Institut fuer Plasmaphysik, EURATOM Association, Boltzmannstrasse 2, 85748 Garching, Germany;

    Max-Planck-Institut fuer Plasmaphysik, EURATOM Association, Boltzmannstrasse 2, 85748 Garching, Germany;

    Max-Planck-Institut fuer Plasmaphysik, EURATOM Association, Boltzmannstrasse 2, 85748 Garching, Germany;

    Max-Planck-Institut fuer Plasmaphysik, EURATOM Association, Boltzmannstrasse 2, 85748 Garching, Germany;

  • 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

    DCS; Plasma control; Exception handling; Data-driven workflow; Real-time network; Configuration;

    机译:DCS;血浆控制;异常处理;数据驱动的工作流程;实时网络;组态;
  • 入库时间 2022-08-18 00:38:41

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