English

Design and performance of the LLRF control system for CSNS LINAC

Accelerator Physics 2019-09-26 v1

Abstract

The China spallation neutron source (CSNS) linac is designed with beam energy of 81MeV and a peak current of 15mA in the first phase. The RF power system for the 81 MeV Linac requires 8 units of RF power sources, each unit has one independent digital low level RF (LLRF) control system which is used to stabilize the amplitude and phase of the RF accelerating field along the linac, and to minimize beam loss. During beam commissioning, all of 8 on-line units of LLRF control system were operating stably and reliable, the control precision of accelerating fields met requirement of beam commissioning. The amplitude and phase variations of the linac fields are less than ±\pm0.2% and ±\pm0.2^\circ without beam loading, or ±\pm0.5% and ±\pm0.5^\circ with 10mA beam loading, much better than the design requirements of ±\pm1% in amplitude and ±\pm1^\circ in phase.

Keywords

Cite

@article{arxiv.1909.11253,
  title  = {Design and performance of the LLRF control system for CSNS LINAC},
  author = {Linyan Rong and Zhencheng Mu and Zhexin Xie and Bo Wang and Wenzhong Zhou and Maliang Wan and Meifei Liu and Jian Li and Xinan Xu},
  journal= {arXiv preprint arXiv:1909.11253},
  year   = {2019}
}

Comments

Poster presented at LLRF Workshop 2019 (LLRF2019, arXiv:1909.06754)