首页> 外文会议>International Particle Accelerator Conference >The New Eddy Current Type Septum Magnets for Upgrading of Fast Extraction in Main Ring of J-PARC
【24h】

The New Eddy Current Type Septum Magnets for Upgrading of Fast Extraction in Main Ring of J-PARC

机译:新型涡流式隔膜磁体,用于在J-PARC主环中提升快速提取

获取原文

摘要

The J-PARC Main Ring (MR) is currently working on upgrading the machine power reach to 750 kW by increasing the beam repetition rate from 0.4 Hz to 0.78 Hz. This new operation mode is referred as "1 Hz" operation. The Fast eXtraction (FX) system in MR needs to upgrade to realize 1 Hz operation, and the improvement will be completed in 2021. The present FX Low-Field Septa (FX LF-Septa) which are conventional ones will be replaced with the new septa which is induced eddy current type (FX Eddy-Septa). The first FX Eddy-Septa system, which included the magnets and short pulse power supply (PS), was constructed in 2014. We have been studying the FX Eddy-Septa system to evaluate the stability of the output pulsed current and magnetic gap field since 2014. In winter of 2018, the 1 Hz operation test by using the two Main-chargers was conducted without any problem. The stability of the output pulsed current was 10 ppm. The leakage field was measured along the circulating beam line, and we found that the level of leakage field was still larger than our requirement. The PS has still several issues which must be solved. The switching time of the Main-charger to the Sub-charger must be reduced, the jitter of time lag between two discharge triggers must be eliminated, and the disagreement between the two current monitor systems must be solved.
机译:J-PARC主环(MR)目前正在升级机器电力达到750 kW,通过将光束重复率从0.4 Hz增加到0.78 Hz。这种新的操作模式称为“1 Hz”操作。 MR中的快速提取(FX)系统需要升级以实现1 Hz操作,并且改进将在2021年完成。将常规的FX低场隔膜(FX LF-SEPTA)将被替换为新的静脉诱导涡流型(FX Eddy-Septa)。包括磁铁和短脉冲电源(PS)的第一FX涡旋系统由2014年建造。我们一直在研究FX涡二氧芯系统,以评估输出脉冲电流和磁隙场的稳定性2014年。在2018年冬天,通过使用两个主充电器的1 Hz操作测试没有任何问题进行。输出脉冲电流的稳定性为10ppm。沿循环梁线测量泄漏场,我们发现泄漏场的水平仍然比我们的要求大。 PS仍有几个必须解决的问题。必须减少主充电器到子充电器的开关时间,必须消除两个放电触发器之间的时间延迟的抖动,并且必须求解两个当前监视系统之间的分歧。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号