MTCA.4-based LLRF control system for the C-ADS proton Linac injector I

被引:1
|
作者
Liu R. [1 ]
Ma X.P. [1 ]
Gan N. [1 ]
Lin H.Y. [1 ]
Wang Q.Y. [1 ]
Mi Z.H. [1 ]
Wang S.Z. [1 ]
Huang X.F. [1 ]
Wu Y. [1 ]
Wang G.W. [1 ]
Chi Y.L. [1 ]
Pan W. [1 ]
机构
[1] Key Laboratory of Particle Acceleration Physics and Technology, IHEP, CAS, Beijing
关键词
CW proton beam; LLRF; MTCA.4; RF system; RFQ; Spoke cavity;
D O I
10.1007/s41605-017-0003-5
中图分类号
学科分类号
摘要
Objective:: The Chinese ADS proton Linac injector I composed of an electron cyclotron resonance ion source, a low-energy beam transport line, a radio frequency quadrupole (RFQ) accelerator, a medium-energy beam transport (MEBT) line, a superconducting section and beam dump with design goal to achieve CW proton beam with beam current 10 mA and energy gain around 10 MeV. In order to maintain the stability of the RF system, to compensate for the beam load effect and to provide the GUI required for the operation of the RF power system, we have established a LLRF control system. Methods:: This LLRF system for ADS proton Linac injector I in IHEP consists of RF reference system and LLRF controllers for one RFQ cavity, two MEBT bunching cavities and 14 superconductive spoke cavities. We have adopted a new development mTCA.4-based hardware platform, and it has some characteristics such as faster bandwidth, standardized design, easy operation and maintenance and good expansibility. Results:: The LLRF system has been improved and optimized and has now been put into operation. It takes into account the pulse and CW beam flow mode, feedforward and feedback control functions. Conclusion:: With the help of this system, we achieved stable operation with narrow pulses, long pulses, and CW modes under different beam loads. This article describes the implementation of this system and presents some initial the CW beam acceleration results with the help of this system at the end of 2016. © 2017, Institute of High Energy Physics, Chinese Academy of Sciences; China Nuclear Electronics and Nuclear Detection Society and Springer Science+Business Media Singapore.
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