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Virtual instrument for controlling and monitoring digitalized power supply in SSRF 被引量:2

Virtual instrument for controlling and monitoring digitalized power supply in SSRF
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摘要 The Shanghai Synchrotron Radiation Facility (SSRF) needs extremely precise power supplies for their various magnets. A digital controller is being developed for the power converters of the SSRF power supply (PS). In the digital controller, a fully digital pulse-width modulator (PWM) directly controls the power unit insulated gate bipolar transistor (IGBT) of the PS. A program in LabVIEW language has been developed to control and monitor the digital PS via serial communication (RS232) from a PC and to modify its parameters as well. In this article, the software design of the virtual instrument for controlling and monitoring digitalized PS and its associated functions are described, and the essential elements of the program graphical main-VI and sub-VI source code are presented and explained. The com- munication protocol and the structure of the developed system are also included in this article. The Shanghai Synchrotron Radiation Facility (SSRF) needs extremely precise power supplies for their various magnets. A digital controller is being developed for the power converters of the SSRF power supply (PS). In the digital controller, a fully digital pulse-width modulator (PWM) directly controls the power unit insulated gate bipolar transistor (IGBT) of the PS. A program in LabVIEW language has been developed to control and monitor the digital PS via serial communication (RS232) from a PC and to modify its parameters as well. In this article, the software design of the virtual instrument for controlling and monitoring digitalized PS and its associated functions are described, and the essential dements of the program graphical main-Ⅵ and sub-Ⅵ source code are presented and explained. The communication protocol and the structure of the developed system are also included in this article.
出处 《Nuclear Science and Techniques》 SCIE CAS CSCD 2006年第3期129-134,共6页 核技术(英文)
关键词 数字功率供给 虚拟工具 SSRF PWM LabVIEW, Digital power supply, Virtual instrument, SSRF, PWM
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参考文献6

  • 1SSRF Design Report. Shanghai Synchrotron Radiation Center, May 2001, Chapter 2: 89-105.
  • 2SSRF Design Report. Shanghai Synchrotron Radiation Center, May 2001, Chapter 3: 43-50.
  • 3Carwardine J, Lenkszus F, Trends in the use of digital technology for control and regulation of power supplies,in Proc. International Conference on Accelerator and Large Experimental Physics Control Systems, Trieste,1999:171-175
  • 4Jenni F, Tanner L, Digital control for highest precision accelerator power supplies, PAC'01, Chicago, May 2001:3681-3683
  • 5National Instruments Corporation, Getting started with LabVIEW, April 2003 Edition, Part Number 323427A-01,Chapter 1:1-16
  • 6National Instruments Corporation, LabVIEW User Manual,April 2003 Edition, Part Number 320999E-01, Chapter 1:1-4

同被引文献22

  • 1Qin Shuren Tang BaopingCollege of Mechanical Engineering, Chongqing University, Chongqing 400044, China.INTELLIGENT VIRTUAL CONTROL:MEASURING INSTRUMENT FROM WHOLE TO PART[J].Chinese Journal of Mechanical Engineering,2002,15(2):131-135. 被引量:19
  • 2李伯全,潘海彬,罗开玉,周重益.远程测控数据传输中的DataSocket技术应用[J].江苏大学学报(自然科学版),2004,25(4):285-288. 被引量:7
  • 3王洪体,陈阳,庄灿涛.SEED格式STEIM2数据压缩算法在实时地震数据传输中的应用[J].地震地磁观测与研究,2004,25(4):14-19. 被引量:17
  • 4万书亭,彭学志.发电机转子轴心轨迹形状自动识别方法的研究[J].华北电力大学学报(自然科学版),2004,31(5):26-29. 被引量:9
  • 5罗开玉,李伯全,孙杰,潘海彬.基于虚拟仪器技术的应变测试系统[J].江苏大学学报(自然科学版),2005,26(2):106-109. 被引量:21
  • 6Joussellin Agnes, Chevalier Roger. Diagnosis of faults in EDF power plants: from monitoring to diagnosis [ J ]. American Society of Mechanical Engineers, Pressure Vesselsand Piping Division, 1994, 14( 1 ) : 19 -23.
  • 7Wan Shuting, Lti Luyong, Liu Qing, et al. A virtual instrument for the rotor winding inter-turn short circuit fault of generator[ C] //2006 International Conference on Power Systems Technology (POWERCON). Chongqing: [s.n. ] ,2006:1 -5.
  • 8Jime'neza F J, De Frutos J . Virtual instrument for measurement, processing data, and visualization of vibration patterns of piezoelectric devices [ J ]. Computer Standards & Interfaces, 2005,27:653 - 663.
  • 9[1]Kaigo M.Can the WSIS declaration principle and plan of action work in Japan? Digital stratification of Japanese Society[J].Tele-matics and Informatics,2005,22(4):333-347.
  • 10[2]Takasugi K,Nakamura M,Kubota M,et al.Service continuity adapting to ubiquitous service environment[J].The Journal of IEICE,2003,86(12):955-958.

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