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FTU toroidal magnet power supply slow control using ITER CODAC Core System

机译:使用ITER CODAC核心系统的FTU环形磁铁电源慢速控制

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摘要

FTU (Frascati Tokamak Upgrade) three-level slow control system has undergone several enhancements during its lifetime, involving essentially the supervisory and medium level, while the lower level is still mainly based on old Westinghouse Numalogic PLCs (Programmable Logic Controller). The legacy PLC controlling the toroidal magnet flywheel generator, named MFG1, is now being replaced with a more modern Siemens Simatic S7 PLC, because of its versatility an the ability to be integrated via standard networking protocol. The upgrade to this family of Siemens PLCs, which in the meantime has been selected as standard by ITER CODAC, has made MFG1 slow control an ideal candidate to deploy ITER CODAC software technologies and architecture to a running plant in an operating tokamak environment. A project has thus been started to port MFG1 control to ITER CODAC I&C architecture using the software package CODAC Core System to interface the PLC with the ITER standard systems for instrumentation and control. Plant System Host (PSH) and Mini-CODAC, developing dedicated HMI (Human-Machine Interface) and realizing the communication layer between MFG1 plant system and FTU supervisor. This paper will give a full account of the project and will report the results that have been obtained up to now, focusing also on the definite advantages provided by a distributed control architecture compared to the supervisor-dependent one still running at FTU, in view of future fusion devices.
机译:FTU(Frascati Tokamak升级)三级慢速控制系统在其生命周期中进行了几项增强,主要涉及监控级和中级,而较低级仍主要基于旧的西屋Numalogic PLC(可编程逻辑控制器)。控制环形磁铁飞轮发电机的传统PLC(称为MFG1)现在已被更现代的Siemens Simatic S7 PLC取代,因为它具有通用性,并且可以通过标准网络协议进行集成。西门子PLC系列产品的升级(同时已被ITER CODAC选择为标准产品)使MFG1慢速控制成为将ITER CODAC软件技术和体系结构部署到运行中的托卡马克环境中的运行工厂的理想选择。因此,已经开始一个项目,使用软件包CODAC Core System将MFG1控制移植到ITER CODAC I&C体系结构,以将PLC与ITER标准系统进行接口,以进行仪表和控制。工厂系统主机(PSH)和Mini-CODAC,开发专用的HMI(人机界面)并实现MFG1工厂系统与FTU监控器之间的通信层。本文将全面介绍该项目,并报告到目前为止所获得的结果,同时着重于与仍然运行在FTU上的依赖于管理者的分布式控制体系结构相比,分布式控制体系结构所具有的明显优势。未来的融合设备。

著录项

  • 来源
    《Fusion Engineering and Design》 |2012年第12期|2012-2015|共4页
  • 作者单位

    Associazione EURATOM-ENEA sulla Fusione, C.R.ENEA via E. Fermi 45, 00044 Frascati, Rome, Italy;

    Associazione EURATOM-ENEA sulla Fusione, C.R.ENEA via E. Fermi 45, 00044 Frascati, Rome, Italy;

    ITER Organization, CS 90046, 13067 Saint-Paul-lez-Durance, France;

    Associazione EURATOM-ENEA sulla Fusione, C.R.ENEA via E. Fermi 45, 00044 Frascati, Rome, Italy;

    Associazione EURATOM-ENEA sulla Fusione, C.R.ENEA via E. Fermi 45, 00044 Frascati, Rome, Italy;

    Cosylab, Laboratorji za Kontrolne sisteme, D.D. Teslova ulka 30, S1-1000 Ljubljana, Slovenia;

    Associazione EURATOM-ENEA sulla Fusione, C.R.ENEA via E. Fermi 45, 00044 Frascati, Rome, Italy;

    ITER Organization, CS 90046, 13067 Saint-Paul-lez-Durance, France;

  • 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

    slow control; CODAC core system; EPICS; FTU;

    机译:慢速控制CODAC核心系统;EPICS;FTU;

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