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BiBTeX citation export for TH1I02: A Novel Cavity BPM Electronics for SHINE Based on RF Direct Sampling and Processing

@inproceedings{lai:ibic2023-th1i02,
  author       = {L.W. Lai and S.S. Cao and J. Chen and X.Q. Liu and R. Meng and Y.M. Zhou},
  title        = {{A Novel Cavity BPM Electronics for SHINE Based on RF Direct Sampling and Processing}},
% booktitle    = {Proc. IBIC'23},
  booktitle    = {Proc. 12th Int. Beam Instrum. Conf. (IBIC'23)},
  eventdate    = {2023-09-10/2023-09-14},
  pages        = {458--461},
  paper        = {TH1I02},
  language     = {english},
  keywords     = {cavity, electron, FPGA, FEL, electronics},
  venue        = {Saskatoon, Canada},
  series       = {International Beam Instrumentation Conference},
  number       = {12},
  publisher    = {JACoW Publishing, Geneva, Switzerland},
  month        = {12},
  year         = {2023},
  issn         = {2673-5350},
  isbn         = {978-3-95450-236-3},
  doi          = {10.18429/JACoW-IBIC2023-TH1I02},
  url          = {https://jacow.org/ibic2023/papers/th1i02.pdf},
  abstract     = {{A RF direct sampling beam signal processor has been developed in SSRF. It mainly consists of four channels RF direct sampling ADCs and a SoC FPGA. The ADC is 9GHz bandwidth and 2.6GHz sampling rate. A prototype of RF module contains band pass filter, low noise ampli-fier and step attenuator has been designed for SHINE cavity BPM system. Then a novel cavity BPM electronic including the processor and the RF module has been built for SHINE. The performance of the electronic has been analyzed and evaluated in lab. The amplitude relative error is 2.0×10⁻⁴,which is better than the required 1×10-3 on cavity BPM system. The phase error is 14fs, also bet-ter than the requirement of RF BAM system. The algorithm and the implementation in FPGA have been introduced.}},
}