论文标题

触发的缩放器模块的应用用于加速器计时

Applications of Triggered Scaler Module for Accelerator Timing

论文作者

Yang, Min, Kamikubota, Norihiko, Tajima, Yuto, Sato, Kenichi C., Kikuzawa, Nobuhiro

论文摘要

自2006年以来,日本质子加速器研究综合体(J-PARC)时机运行期间发生了意外的触发失败事件。但是,在许多可疑的模块中,很难找到有故障的模块。为了更轻松地找到这样的故障模块,开发了触发的鳞片模块,该模块被设计为PLC型I/O模块。这种类型的模块需要J-PARC主环(MR)慢循环(2.48/5.20 s)的起始信号,以及作为参考信号的快速周期(25 Hz)的起始信号,这是由J-PARC正时系统生成的。模块中的缩放器计算机器周期中输入脉冲的数量,并将其存储在存储器扑比器中。在2018年,使用注射启动器的触发器和J-PARC MR的低级射频(LLRF)信号对模块进行了评估。显示了预期的结果。在2020年,基于触发的缩放器模块开发了两个应用程序。第一个是检测意外触发事件的应用程序,成功地检测到了模拟的触发失败事件。第二个是机器保护系统(MPS)的中止信号的应用,表明该模块能够根据与加速器周期的关系可视化信号。两个应用程序显示了将来开发更多定制应用程序的可能性。本文讨论了开发一种可以在其他加速器设施中使用的便携式意外触发检测系统的想法。

Since 2006, there have been unexpected trigger-failure events during the operation of the Japan Proton Accelerator Research Complex (J-PARC) timing system. However, among the many suspected modules, it has been difficult to find the one with the fault. To find such a faulty module more easily, the triggered scaler module, which was designed as a PLC-type I/O module, was developed. This type of module requires the start signal of the J-PARC main ring (MR) slow cycle (2.48/5.20 s) and the start signal of the rapid cycle (25 Hz) as reference signals, which are generated by the J-PARC timing system. A scaler in the module counts the number of input pulses during a machine cycle, and stores them in memory-buffers. In 2018, the module was evaluated using the trigger for injection kicker and the low-level radio frequency (LLRF) signal of J-PARC MR. The expected results were shown. In 2020, two applications were developed based on a triggered scaler module. The first one, an application for detecting unexpected-trigger events, successfully detected simulated trigger-failure events. The second one, an application for the abort signal of a machine protection system (MPS), showed that the module is capable of visualizing signals based on a relationship with the accelerator cycle. Two applications show possibilities for the development of more customized applications in the future. An idea to develop a portable unexpected-trigger detection system, which can be used in other accelerator facilities, is discussed herein.

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