猝发多脉冲感应腔磁芯直流复位系统研制

Development of a magnetic core direct current reset system of the multi-pulse induction cells at burst mode

  • 摘要: 对多组磁芯进行并联复位时,磁芯各次励磁工作点不一致,会导致装置运行状态不够稳定。将原高功率猝发多脉冲直线感应加速器感应腔磁芯脉冲并联复位系统改造为直流复位系统,该直流复位系统利用继电器对每个感应腔的复位电路进行单独控制,在使用可以周期性重复输出的恒流源的条件下,实现了对多组磁芯一对一的直流复位,解决了脉冲并联复位引起的磁芯各次励磁工作点不一致的问题。工程实施中,系统通过两套恒流源与8套切换控制箱协同工作对94组感应加速腔磁芯进行复位,显著降低了系统复杂度与维护成本。实际应用验证表明,改进后加速器的多脉冲稳定性显著提升,加速器束心位置抖动由1.3 mm降至1 mm以下。介绍了猝发多脉冲感应腔磁芯直流复位系统的工程设计思路、关键器件以及最终的工程布局和运行效果。

     

    Abstract: For a facility using multi-group magnetic cores, its operation stability will be affected by the different working points of the multi-group magnetic cores being reset in parallel. A direct current reset system of the multi-pulse induction cells is developed instead of the original parallel pulsed reset system for a multi-pulse high power Linear Induction Accelerator (LIA) at burst mode. Resetting multi-group magnetic cores one by one is realized by a separate relay switch for every induction cell and constant current sources with periodical output using the direct current reset system, and the problem of inconsistency in working points caused by parallel pulsed reset is effectively resolved. During engineering implementation, the system operates with two sets of constant current sources and eight switch control boxes to reset 94 groups of induction cell magnetic cores, significantly reducing system complexity and maintenance costs. Practical validation demonstrates that the improved accelerator exhibits enhanced multi-pulse stability, with beam centroid position jitter reduced from 1.3 mm to less than 1 mm. This paper describes the physical design of the direct current reset unit, introduces the layout of the whole reset system which includes the main units, and presents the improvement effect.

     

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