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Real-time cavity simulator-based low-level radio-frequency test bench and applications for accelerators

机译:基于实时腔模拟器的低级射频测试台和加速器的应用

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摘要

A Low-level radio-frequency (LLRF) control systems is required to regulate the rf field in the rf cavity used for beam acceleration. As the LLRF system is usually complex, testing of the basic functions or control algorithms of this system in real time and in advance of beam commissioning is strongly recommended. However, the equipment necessary to test the LLRF system, such as superconducting cavities and high-power rf sources, is very expensive; therefore, we have developed a field-programmable gate array (FPGA)-based cavity simulator as a substitute for real rf cavities. Digital models of the cavity and other rf systems are implemented in the FPGA. The main components include cavity baseband models for the fundamental and parasitic modes, a mechanical model of the Lorentz force detuning, and a model of the beam current. Furthermore, in our simulator, the disturbance model used to simulate the power-supply ripples and microphonics is also carefully considered. Based on the presented cavity simulator, we have established an LLRF system test bench that can be applied to different cavity operational conditions. The simulator performance has been verified by comparison with real cavities in KEK accelerators. In this paper, the development and implementation of this cavity simulator is presented first, and the LLRF test bench based on the presented simulator is constructed. The results are then compared with those for KEK accelerators. Finally, several LLRF applications of the cavity simulator are illustrated.
机译:需要低级射频(LLRF)控制系统来调节用于光束加速的RF腔中的RF场。随着LLRF系统通常复杂,强烈建议实时测试该系统的基本功能或控制算法,并在光束调试之前进行了测试。然而,测试LLRF系统所需的设备,例如超导腔和高功率RF源,非常昂贵;因此,我们开发了一种现场可编程门阵列(FPGA)的腔体模拟器,作为真实RF腔的替代品。腔体和其他RF系统的数字模型在FPGA中实现。主要组件包括用于基本和寄生模式的腔基带模型,洛伦兹力静脉的机械模型,以及光束电流的模型。此外,在我们的模拟器中,还仔细考虑了用于模拟电源涟漪和微孔的扰动模型。基于所提出的腔模拟器,我们已经建立了一种可以应用于不同腔操作条件的LLRF系统测试台。通过与Kek加速器中的实腔比较验证了模拟器性能。本文首先提出了该腔模拟器的开发和实现,构建了基于所呈现的模拟器的LLRF测试台。然后将结果与kek促进剂的结果进行比较。最后,示出了腔模拟器的几个LLRF应用。

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