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首页> 外文期刊>IEEE Transactions on Nuclear Science >Feedback Control of Loaded Q Values of the Superconducting Cavities at FLASH
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Feedback Control of Loaded Q Values of the Superconducting Cavities at FLASH

机译:FLASH中超导腔的已加载Q值的反馈控制

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摘要

The well-established technology of superconducting niobium cavities (TESLA - TeV-Energy Superconducting Linear Accelerator) finds an increasing number of applications for linear accelerators in high-energy physics experiments. Together with cavity design and manufacturing, control systems for accelerating field parameters were developed. The digital control system developed for cryomodule operation at the Free Electron Laser in Hamburg (FLASH) is able to perform field amplitude and phase regulation with the precision requested for the multiple user experiments carried at FLASH and according to the required laser light parameters. While new experiments (like the International Linear Collider or the European X-FEL) are based on the same technology (and similar control systems), they require additional levels of controlling superconducting structures parameters in order to comply with tighter power budget overheads and finer field regulation requirements. Consequently, the possibility of controlling such parameters as cavity loaded quality factor or resonance frequency is becoming more attractive. The necessity and the benefits of regulating these parameters have been described in and . In this paper, we describe the algorithm for feedback control of the loaded Q in TESLA cavities by means of motor control of the fundamental power coupler.
机译:完善的超导铌腔技术(TESLA-TeV-Energy超导线性加速器)在高能物理实验中发现了线性加速器的越来越多的应用。与腔体设计和制造一起,开发了用于加速场参数的控制系统。为在汉堡的Free Electron Laser(FLASH)上进行低温模块操作而开发的数字控制系统,能够根据FLASH进行的多个用户实验所要求的精度,并根据所需的激光参数,执行磁场幅度和相位调节。虽然新实验(例如International Linear Collider或European X-FEL)基于相同的技术(和类似的控制系统),但它们需要控制超导结构参数的附加级别,以符合更严格的功率预算开销和更精细的领域法规要求。因此,控制诸如腔负载品质因数或共振频率之类的参数的可能性变得越来越有吸引力。和中描述了调节这些参数的必要性和好处。在本文中,我们描述了通过基本功率耦合器的电机控制来对TESLA腔中的已加载Q进行反馈控制的算法。

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