一种用于磁性测量的交替连续集成系统,用于实验先进的超导托卡马卡
1School of Instrument Science and Optoelectronics Engineering, Hefei University of Technology, Hefei 230009, China.
The Review of scientific instruments
|November 1, 2023
概括
本研究介绍了tokamaks中磁性测量系统 (MMS) 的先进交替集成系统,克服了扩展操作的漂移和和问题. 新系统确保了精确的测量,这对于融合研究中的实时等离子体控制至关重要.
科学领域:
- 融合能源研究 融合能源研究
- 等离子体物理仪器仪器仪表
- 磁性测量系统 磁性测量系统
背景情况:
- 托卡马克磁性测量系统 (MMSs) 依赖于集成器.
- 实验先进超导托卡马克 (EAST) 的当前集成器面临和和漂移,限制了更长的脉冲操作.
研究的目的:
- 开发一种新的集成系统,以克服当前托卡马克集成器的局限性.
- 通过增强的集成功能,在tokamaks中实现更长的脉冲操作.
主要方法:
- 提出了一个新的交替集成系统,将模拟集成与数字漂移纠正相结合.
- 使用微控制器单元 (MCU) 控制两个并行模拟集成器,可交替工作.
- 基于个别错误特征和组装集成段的执行偏移补偿.
主要成果:
- 原型集成器满足实时等离子体控制要求,可在小时级持续时间.
- 由于灵活的错误纠正,该系统表现出高度自动化的操作和维护.
- 在tokamak磁性测量中成功解决了和和漂移问题.
结论:
- 拟议的交替集成系统是下一代托卡马克运营的可行解决方案.
- 这一进步支持扩展等离子脉冲持续时间,这对于核聚变能源发展至关重要.
- 该系统的自动化功能提高了实验核聚变装置的可用性和可靠性.
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