Design of rapid tuning system for a ferrite-loaded cavity
Abstract
IntroductionA high power, broadband and rapid frequency sweeping RF system was developed to satisfy the demand of China Spallation Neutron Source (CSNS)/Rapid Cycling Synchrotron (RCS).
Material and methodsThe cavity tuning is the key issue which has a great impact on the performance of the whole RF system. To satisfy the requirements of cavity dynamic tuning caused by the nonlinear characteristics of ferrite, some new technologies were developed and applied.
ConclusionIn this paper, the overall design of the tuning system is introduced. The ensuing discussion focuses on the comparison between different types of bias supplies, the control algorithm of low-level RF (LLRF) system. The commissioning results with beam power of 100 kW are also shown and discussed.

Xiao Li, Hong Sun, Chun-Lin Zhang, et al. Design of rapid tuning system for a ferrite-loaded cavityJ. Radiation Detection Technology and Methods, 2021, 5(3): 324-331. DOI: 10.1007/s41605-021-00255-8
| Citation: |
Xiao Li, Hong Sun, Chun-Lin Zhang, et al. Design of rapid tuning system for a ferrite-loaded cavityJ. Radiation Detection Technology and Methods, 2021, 5(3): 324-331. DOI: 10.1007/s41605-021-00255-8
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Xiao Li, Hong Sun, Chun-Lin Zhang, et al. Design of rapid tuning system for a ferrite-loaded cavityJ. Radiation Detection Technology and Methods, 2021, 5(3): 324-331. DOI: 10.1007/s41605-021-00255-8
| Citation: |
Xiao Li, Hong Sun, Chun-Lin Zhang, et al. Design of rapid tuning system for a ferrite-loaded cavityJ. Radiation Detection Technology and Methods, 2021, 5(3): 324-331. DOI: 10.1007/s41605-021-00255-8
|