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Piezoelectric actuator based phase locking system to improve the dynamics of the control scheme for a heavy ion superconducting linac

机译:基于压电致动器的锁相系统可改善重离子超导直线加速器控制方案的动力学

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摘要

The superconducting heavy ion linear accelerator at Inter-University Accelerator Centre Delhi has been in operation since 2007. Initially, the superconducting niobium Quarter Wave Resonators (QWRs) in the linac were phase locked using a combination of electronic and mechanical controls which operated in fast (~10 μsec) and slow (~sec) time scales respectively. In this scheme, fast control was achieved through dynamic phase control whereas slow control of the frequency was done through the niobium tuner bellows installed at the drift tube end of the resonator and flexed using helium gas to change the resonance frequency. In order to improve the dynamics of this control system, an alternate scheme using piezoelectric actuator, instead of helium gas, to flex the same niobium bellows, has been implemented in the QWRs of the second and third accelerating modules of the linac The piezoelectric actuator is used in closed loop along with the fast dynamic phase control scheme. The feedback loop of the piezoelectric control includes a dual control scheme -an integral control loop to arrest the slow drift, and the positive position feedback (PPF) based control loop to damp the microphonics. This control scheme has been found to arrest slow drifts in the resonator frequency more rightly along with damping of low frequency microphonics (~few tens of Hz) picked up by the resonator from its surrounding environment This has substantially eased the load from the fast electronic control, resulting in the reduction of the radio frequency (RF) power requirement during operation. In addition, it has improved the stability of phase and amplitude of the QWRs. The details of the new scheme along with results obtained during the online run of the linac for beam acceleration are presented.
机译:德里大学间加速器中心的超导重离子线性加速器自2007年以来一直在运行。起初,直线加速器中的超导铌四分之一波长谐振器(QWR)通过电子和机械控制相结合的方式被锁相,并快速运行。 〜10μsec)和慢(〜sec)时间刻度。在该方案中,通过动态相位控制实现了快速控制,而通过安装在谐振器漂移管端并使用氦气弯曲以改变谐振频率的铌调谐器波纹管,实现了频率的慢速控制。为了改善此控制系统的动力学性能,在直线加速器的第二和第三加速模块的QWR中,已实现了一种替代方案,该方案使用压电致动器代替氦气来弯曲相同的铌波纹管。与快速动态相位控制方案一起用于闭环中。压电控制的反馈回路包括双重控制方案-集成控制回路以阻止缓慢的漂移,以及基于正位置反馈(PPF)的控制回路以衰减麦克风。已经发现这种控制方案可以更正确地抑制谐振器频率中的缓慢漂移,以及谐振器从其周围环境中拾取的低频微音(约几十赫兹)的阻尼,从而大大减轻了快速电子控制带来的负担。 ,从而降低了运行期间的射频(RF)功率要求。此外,它还提高了QWR的相位和幅度的稳定性。介绍了新方案的详细信息,以及在直线加速器在线运行期间获得的光束加速结果。

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    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India,Inter University Accelerator Centre, P.O.Box.10502, New Delhi - 110067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Electronics Division, Bhabha Atomic Research Centre, Mumbai - 400 085, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

    Inter University Accelerator Centre (IUAC), Aruna Asaf Ali Marg, New Delhi - 110 067, India;

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  • 正文语种 eng
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  • 关键词

    Quarter wave resonator; Microphonics; Dynamic phase control; Piezoelectric actuator; Integral control; Positive position feedback;

    机译:四分之一波谐振器;麦克风;动态相位控制;压电执行器;整体控制;积极的位置反馈;

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