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DESIGN AND IMPLEMENT OF WEB BASED SCADA SYSTEM FOR HUST FIELD-REVERSED CONFIGURATION DEVICE

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Executive Summary

This paper presents the design and implementation of a web-based SCADA system for the HUST Field-Reversed Configuration (HFRC) fusion research device. Built on the in-house developed CFET framework using microservices, finite state machines, and observer patterns, the system coordinates subsystems, manages high-precision hardware triggers, and provides a customizable web-based HMI and robust data acquisition pipeline.
Analysis Confidence: High
ST_CODE: OPV016

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DOC-MOPV016

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Title and Abstract

DESIGN AND IMPLEMENT OF WEB BASED SCADA SYSTEM FOR HUST FIELD-REVERSED CONFIGURATION DEVICE F. Wu†, Y. Jiang, S. Li, B. Rao, W. Wang, X. Xie, Y. Yang, M. Zhang, P. Zhang, W. Zheng International Joint Research Laboratory of Magnetic Confinement Fusion and Plasma Physics, State Key Laboratory of Advanced Electromagnetic Engineering and Technology, School of Electrical and Electronic Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China Abstract As a large complex fusion research device for studying field reversed configuration (FRC) plasma, HUST FRC (HFRC) is composed of many subsystems. In order to coordinate all systems and ensure the correct, orderly and stable operation of the whole experimental device, it is very important to have a unified and powerful control system. HFRC SCADA (Supervisory Control And Data Acquisition) system has selected the in-house developed CFET (Control system Framework for Experimental Devices Toolkit) as the control framework, with advantages of strong abstraction, simplified framework, transparent protocol and flexible extension due to Web technology.

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This paper presents the design and implementation of a web-based SCADA system for the HUST Field-Reversed Configuration (HFRC) fusion research device. Built on the in-house developed CFET framework using microservices, finite state machines, and observer patterns, the system coordinates subsystems, ...