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Feed-forward control of the amplitude and the phase of a high-power RF pulse based on the overdrive technique

机译:基于过驱动技术的大功率RF脉冲的幅度和相位的前馈控制

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We have developed a new feed-forward control system to precisely control the amplitude and phase of the pulsed RF power in an electron linear accelerator (linac) to make the accelerating field constant. Fast variations and ripples in the amplitude and the phase in RF pulses of some-microsecond duration are compensated for by applying anti-variation control signals to a variable attenuator and a phase shifter in the low-level system. The system makes use of the overdrive technique, which is commonly used in analog circuits, to speed up the slow response of the analog phase shifter, while the control signals are digitally processed; thus, the method is a hybrid of analog and digital techniques. Peak-to-peak variations in the amplitude and phase are reduced by these means from 11.6% to 0.4% and from 6.1° to 0.3°, respectively, in 7.6-u.s-long RF pulses for the L-band electron linac at Osaka University.
机译:我们已经开发了一种新的前馈控制系统,可以精确控制电子线性加速器(直线加速器)中脉冲RF功率的幅度和相位,以使加速磁场恒定。通过将抗变化控制信号应用于低电平系统中的可变衰减器和移相器,可以补偿持续几微秒的RF脉冲中幅度和相位的快速变化和波动。该系统利用了模拟电路中常用的过驱动技术来加快模拟移相器的慢响应,同时对控制信号进行数字处理。因此,该方法是模拟和数字技术的混合。大阪大学L波段电子直线加速器的7.6us长的RF脉冲通过这种方式将幅度和相位的峰峰值变化分别从11.6%降低到0.4%,从6.1°降低到0.3°。 。

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