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DBPM signal processing with field programmable gate arrays 被引量:11

DBPM signal processing with field programmable gate arrays
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摘要 DBPM system performance is determined by the design and implementation of beam position signal processing algorithm.In order to develop the system,a beam position signal processing algorithm is implemented on FPGA.The hardware is a PMC board ICS-1554A-002(GE Corp.)with FPGA chip XC5VSX95T.This paper adopts quadrature frequency mixing to down convert high frequency signal to base.Different from conventional method,the mixing is implemented by CORDIC algorithm.The algorithm theory and implementation details are discussed in this paper.As the board contains no front end gain controller,this paper introduces a published patent-pending technique that has been adopted to realize the function in digital logic.The whole design is implemented with VHDL language. An on-line evaluation has been carried on SSRF(Shanghai Synchrotron Radiation Facility)storage ring.Results indicate that the system turn-by-turn data can measure the real beam movement accurately,and system resolution is 1.1μm. DBPM system performance is determined by the design and implementation of beam position signal processing algorithm..,In order to develop the system, a beam position signal processing algorithm is implemented on FPGA. The hardware is a PMC board ICS-1554A-002 (GE Corp.) with FPGA chip XCSVSX95T. This paper adopts quadrature frequency mixing to down convert high frequency signal to base. Different from conventional method, the mixing is implemented by CORD1C algorithm. The algorithm theory and implementation details are discussed in this paper. As the board contains no front end gain controller, this paper introduces a published patent-pending technique that has been adopted to realize the function in digital logic. The whole design is implemented with VHDL language. An on-line evaluation has been carried on SSRF (Shanghai Synchrotron Radiation Facility) storage ring. Results indicate that the system turn-by-turn data can measure the real beam movement accurately, and system resolution is 1.1 ~tm.
出处 《Nuclear Science and Techniques》 SCIE CAS CSCD 2011年第3期129-133,共5页 核技术(英文)
基金 Supported by Shanghai Synchrotron Radiation Facility project
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参考文献11

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同被引文献46

  • 1冷用斌,阎映炳,周伟民,袁任贤.用束流位置监测器精确测量储存环流强[J].强激光与粒子束,2010,22(12):2973-2978. 被引量:8
  • 2张雪萍,童子权,任丽军,冯伟.高速数据采集系统中时钟的设计[J].国外电子测量技术,2006,25(9):12-15. 被引量:6
  • 3Hao Zhou, Shubin Liu, Lei Zhao, et al. Design of the fully digital beam position monitor for beam position measurement in SSRF.ICEMI'2009, China, Beijing, 2009: 1045-1051.
  • 4Vismara G, Jacobs K D, Melville R C. Signal processing for beam position monitors[J]. Amer Inst Physics, 2000, 546:36-60.
  • 5Joe Mitola. The software radio architecture. IEEEcommunications Megazinc, 1995, 26-38.
  • 6Schlott V, Dach M, Dehler M, et al. Commissioning of the SLS digital BPM system. PAC01, 2001,Chicago, 2397-2399.
  • 7Denard J C, Cassinari L, Dykes M, et al. Overview of the Diagnostics Systems of SOLEIL and DIAMOND. DIPAC 03, Mainz, Germany, 2003:6-9.
  • 8Leng Y B, Zhou W M, Chen Y Z, et al. Beam instrumentation system development and commissioning in SSRF. EPAC08, Genoa, Ttaly, 2008:1080-1082.
  • 9Analog Device. Datasheet ofAD9461.
  • 10http ://www.analog.com Samsung Device. Datasheet of S3C6410.

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