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Application of ITER CODAC Core System for NSTX SPA-2 project

机译:ITER CODAC核心系统在NSTX SPA-2项目中的应用

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The National Spherical Torus Experiment (NSTX) was upgraded in 2011 with a second switching power amplifier (SPA2) to power NSTX's resistive wall mode (RWM) coils. Integration of the power supply's local controls with the Central Instrumentation and Control System (CI&C) was accomplished, in part, through PLC-to-EPICS software that was included in the ITER project's Control, Data Access, and Communication (CODAC) Core System. The Core System is a software suite for ITER plant system manufacturers to use as a template for development of their interface with CODAC. NSTX decided to use this software for the SPA2 project for a number of reasons, principally: 1) it was cost-effective for NSTX, 2) it provided an opportunity to collaborate with ITER and evaluate their Plant System Interface methodologies, documentation, and information technology and control system processes; on an operational machine. This paper will present an overview of the SPA2 CI&C interface and describe our experience using the ITER Core System software and applicable plant system integration processes.
机译:国家球形圆环实验(NSTX)在2011年进行了升级,增加了第二个开关功率放大器(SPA2),可为NSTX的电阻壁模式(RWM)线圈供电。电源的本地控制与中央仪表和控制系统(CI&C)的集成部分是通过ITER项目的控制,数据访问和通信(CODAC)核心系统中包含的PLC-to-EPICS软件完成的。核心系统是ITER工厂系统制造商的软件套件,可用作开发与CODAC的接口的模板。 NSTX决定将该软件用于SPA2项目的原因有很多,主要是:1)NSTX具有成本效益,2)它提供了与ITER合作并评估其工厂系统接口方法,文档和信息的机会。技术和控制系统流程;在可操作的机器上。本文将概述SPA2 CI&C接口,并描述我们使用ITER核心系统软件和适用的工厂系统集成过程的经验。

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