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磁约束氘氘聚变中子源预研装置控制系统设计

王俪晔 郑玮 饶波 杨勇 杨玉林 叶伟杰 谢筱涵 张沛龙

发电技术2024,Vol.45Issue(6):1048-1059,12.
发电技术2024,Vol.45Issue(6):1048-1059,12.DOI:10.12096/j.2096-4528.pgt.24153

磁约束氘氘聚变中子源预研装置控制系统设计

Design of Control System for Preliminary Research Device of Magnetic Confinement Deuterium-Deuterium Fusion Neutron Source

王俪晔 1郑玮 1饶波 1杨勇 1杨玉林 1叶伟杰 1谢筱涵 1张沛龙1

作者信息

  • 1. 强电磁技术全国重点实验室(华中科技大学电气与电子工程学院),湖北省 武汉市 430074||磁约束聚变与等离子体国际合作联合实验室(华中科技大学电气与电子工程学院),湖北省武汉市 430074
  • 折叠

摘要

Abstract

[Objectives]The preliminary research device of magnetic confinement deuterium-deuterium fusion neutron source is a novel neutron source preliminary research device based on field-reversed configuration(FRC)cascade magnetic compression.It aims to leverage the experiences from the first-phase construction to enhance system design,significantly improve plasma parameters,and further expand research on magnetic compression fusion,laying the foundation for achieving a large-volume high-flux fusion neutron source in the third phase.[Methods]The preliminary research device control system optimized and reconstructed the control framework,provided safety interlocking,pulse control and comprehensive data services,coordinated and integrated each service into the automated discharge process through integrated control,and added a number of resources to expand applications and DevOps tool.[Results]Through the reconfiguration design,the comprehensive performance of the control system in terms of safety,stability and efficiency had been significantly improved.The safety interlock system ensured the safety of personnel and equipment during the experiment process,the pulse control system achieved high-precision timing control,the comprehensive data service provided full process support from data collection to analysis,and resource expansion applications and DevOps tools further improved the system flexibility and operation and maintenance efficiency.[Conclusions]By optimizing the control framework and introducing advanced operation and maintenance tools,the design can better meet the needs of complex device structure and precise discharge flow,and provide an efficient control system construction plan for the subsequent long-term cooperation construction of the magnetically confined deuterium fusion neutron source preliminary research device.

关键词

核聚变/聚变中子源/磁约束/等离子体/场反位形/控制系统/氘氘聚变

Key words

nuclear fusion/fusion neurton source/magnetic confinement/the plasma/field-reversed configuration(FRC)/control system/deuterium-deuterium fusion

分类

能源科技

引用本文复制引用

王俪晔,郑玮,饶波,杨勇,杨玉林,叶伟杰,谢筱涵,张沛龙..磁约束氘氘聚变中子源预研装置控制系统设计[J].发电技术,2024,45(6):1048-1059,12.

基金项目

国家自然科学基金项目(12375219,51821005).Project Supported by National Natural Science Foundation of China(12375219,51821005). (12375219,51821005)

发电技术

OACSTPCD

2096-4528

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