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FPGA-based amplitude and phase detection in DLLRF

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【作者】 刘熔王峥潘卫民王光伟林海英沙鹏曾日华

【Author】 LIU Rong 1,2 WANG Zheng3 PAN Wei-Min 1 WANG Guang-Wei 1 LIN Hai-Ying1 SHA Peng 1,2 ZENG Ri-Hua 1,2 1(Institute of High Energy Physics,CAS,Beijing 100049,China) 2(Graduate University of Chinese Academy of Sciences,Beijing 100049,China) 3(School of Electronic and Information Engineering Tianjin University,Tianjin 300072,China)

【机构】 Institute of High Energy Physics,CASGraduate University of Chinese Academy of SciencesSchool of Electronic and Information Engineering Tianjin University

【摘要】 The new generation particle accelerator requires a highly stable radio frequency(RF) system. The stability of the RF system is realized by the Low Level RF(LLRF) subsystem which controls the amplitude and phase of the RF signal. The detection of the RF signal’s amplitude and phase is fundamental to LLRF controls. High-speed ADC(Analog to Digital Converter) ,DAC(Digital to Analog Converter) and FPGA(Field Programmable Gate Array) play very important roles in digital LLRF control systems. This paper describes the implementation of real-time amplitude and phase detection based of the FPGA with an analysis of the main factors that affect the detection accuracy such as jitter,algorithm’s defects and non-linearity of devices,which is helpful for future work on high precision detection and control.

【Abstract】 The new generation particle accelerator requires a highly stable radio frequency(RF) system. The stability of the RF system is realized by the Low Level RF(LLRF) subsystem which controls the amplitude and phase of the RF signal. The detection of the RF signal’s amplitude and phase is fundamental to LLRF controls. High-speed ADC(Analog to Digital Converter) ,DAC(Digital to Analog Converter) and FPGA(Field Programmable Gate Array) play very important roles in digital LLRF control systems. This paper describes the implementation of real-time amplitude and phase detection based of the FPGA with an analysis of the main factors that affect the detection accuracy such as jitter,algorithm’s defects and non-linearity of devices,which is helpful for future work on high precision detection and control.

【基金】 Supported by Knowledge Innovation Program of Chinese Academy of Sciences and National Natural Science Foundation of China (10675142)
  • 【文献出处】 中国物理C ,Chinese Physics C , 编辑部邮箱 ,2009年07期
  • 【分类号】O572.211
  • 【被引频次】8
  • 【下载频次】100
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