首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Development of an automatic frequency control system for an X-band (=9300 MHz) RF electron linear accelerator
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Development of an automatic frequency control system for an X-band (=9300 MHz) RF electron linear accelerator

机译:开发用于X波段(= 9300 MHz)RF电子线性加速器的自动频率控制系统

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KAERI is developing a 6 MeV X-band radio frequency (RF) electron linear accelerator for medical purposes. The proposed X-band accelerator consists of an e-gun, an accelerating structure, two solenoid magnets, two steering magnets, a magnetron, a modulator, and an automatic frequency control (AFC) system. The accelerating structure of the component consists of oxygen-free high-conductivity copper (OFHC). Therefore, the ambient temperature changes the volume, and the resonance frequency of the accelerating structure also changes. If the RF frequency of a 9300 MHz magnetron and the resonance frequency of the accelerating structure do not match, it can degrade the performance. That is, it will decrease the output power, lower the beam current, decrease the X-ray dose rate, increase the reflection power, and result in unstable operation of the accelerator. Accelerator operation should be possible at any time during all four seasons. To prevent humans from being exposed to radiation when it is operated, the accelerator should also be operable through remote monitoring and remote control. Therefore, the AFC system is designed to meet these requirements; it is configured based on the concept of a phase-locked loop (PLL) model, which includes an RF section, an intermediate frequency (IF) section, and a local oscillator (LO) section. Some resonance frequency controllers use a DC motor, chain, and potentiometer to store the position and tune the frequency. Our AFC system uses a step motor to tune the RF frequency of the magnetron. The maximum tuning turn number of our magnetron frequency tuning shaft is ten. Since the RF frequency of our magnetron is 9300 ± 25 MHz, it gives 5 MHz (∵ ± 25 MHz/10 turns → 50 MHz/10 turns =5 MHz/turn) frequency tuning per turn. The rotation angle of our step motor is 0.72" per step and the total step number per one rotation is 360°/0.72°=500 steps. Therefore, the tuning range per step is 10 kHz/step (=5 MHz per turn/500 steps per turn). The developed system is a more compact new resonance frequency control system. In addition, a frequency measuring part is included and it can measure the real-time resonance frequency from the magnetron. We have succeeded in the stable provisioning of RF power by recording the results of a 0.01% frequency deviation in the AFC during an RF test. Accordingly, in this paper, the detailed design, fabrication, and a high power test of the AFC system for the X-band linac are presented.
机译:KAERI正在开发用于医疗目的的6 MeV X波段射频(RF)电子线性加速器。拟议中的X波段加速器由电子枪,加速结构,两个电磁磁铁,两个转向磁铁,磁控管,调制器和自动频率控制(AFC)系统组成。组件的加速结构由无氧的高导电性铜(OFHC)组成。因此,环境温度改变体积,并且加速结构的共振频率也改变。如果9300 MHz磁控管的RF频率与加速结构的共振频率不匹配,则会降低性能。即,它将降低输出功率,降低束电流,降低X射线剂量率,增加反射功率,并导致加速器的不稳定运行。在所有四个季节中的任何时候都应该可以进行加速器操作。为防止人体在操作时受到辐射,该加速器还应可通过远程监控和遥控操作。因此,AFC系统旨在满足这些要求。它是根据锁相环(PLL)模型的概念配置的,该模型包括一个RF部分,一个中频(IF)部分和一个本地振荡器(LO)部分。一些共振频率控制器使用直流电动机,链条和电位计来存储位置并调谐频率。我们的AFC系统使用步进电机来调谐磁控管的RF频率。磁控管频率调谐轴的最大调谐匝数为十。由于我们的磁控管的RF频率为9300±25 MHz,因此每匝可进行5 MHz(∵±25 MHz / 10匝→50 MHz / 10匝= 5 MHz /匝)的频率调谐。我们的步进电机的旋转角度为每步0.72英寸,每转一圈的总步数为360°/ 0.72°= 500步。因此,每步的调谐范围为10 kHz /步(= 5 MHz每圈/ 500所开发的系统是一种更加紧凑的新型谐振频率控制系统,另外还包括一个频率测量部件,它可以测量磁控管的实时谐振频率,我们已经成功地稳定地提供了RF通过记录射频测试中AFC频率偏差为0.01%的结果来计算功率,因此,本文提出了针对X波段直线加速器的AFC系统的详细设计,制造和高功率测试。

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