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EPA最佳主时钟的控制算法研究 被引量:1

Research on Control Algorithm to Optimal Master Clock of EPA
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摘要 为满足EPA网络时间同步的高精度要求,建立了一种二维模糊控制器来确定设备自身时钟的优劣层次,系统采用公平竞争的方法从众多现场设备中快速、准确地决策一个时钟性能最好的设备作为EPA系统的最佳主时钟,保证了系统运行的稳定性,降低了本地时钟的波动,使现场设备的时钟同步精度提高到50μs。 To meet the high quality for clock synchronization in EPA network system, a two-dimension fuzzy controller is constructed to demonstrate the quality of every device. The optimal master clock of the system is selected quickly and exactly from multi-field devices based on equitable competition. Based on the algorithm, the stability of EPA system is improved and the fluctuation of local clock is reduced. The accuracy of field devices' clock synchronization is up to 50μs.
出处 《计算机工程》 CAS CSCD 北大核心 2007年第23期237-239,共3页 Computer Engineering
基金 国家"863/CIMS"计划基金资助项目(2004AA412020)
关键词 EPA 主时钟 精确时间同步协议 模糊控制 时间戳 Ethernet for plant automation(EPA) master clock precision clock synchronization protocol(PTP) fuzzy control time-stamping
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参考文献6

  • 1冯冬芹,金建祥,褚健.工业以太网关键技术初探[J].信息与控制,2003,32(3):219-224. 被引量:62
  • 2IEEE Std. 1588^TM-2002 IEEE Standard for a Precision Clock Synchronization Protocol for Networked Measurement and Control Systems[S]. New York, USA: The Institute of Electrical and Electronics Engineers, 2002.
  • 3耿国华.数据结构[M].西安:两安电子科技大学出版社,2002.
  • 4Gusella R, Zatti S. The Accuracy of the Clock Synchronization Achieved by TEMPO in Berkely Unix 4.3BSD[J]. IEEE Transactions on Software Engineering, 1989, 15(7): 847-852.
  • 5潘策,陈晓南,杨培林.时变滞后系统的模糊预估控制[J].微计算机信息,2003,19(12):27-28. 被引量:1
  • 6杨丽,杨小光,张庆灵,范芙蓉,刘国义.不确定时滞系统的鲁棒耗散控制[J].控制工程,2006,13(2):154-157. 被引量:9

二级参考文献19

  • 1李力争.纯滞后过程的模糊预估控制[J].长沙交通学院学报,1996,12(1):18-23. 被引量:4
  • 2黄崇福 王家鼎 等.模糊信息优化处理技术及其应用[M].北京,北京航空航天大学出版社,1993..
  • 3Liu Y Q,Xie X S.Robust stability of uncertain singular systems with time delay[J].Journal of South China University of Technology,1996,24(1):44-50.
  • 4Xie S L,Xie L H,Robust dissipative control for linear systems with dissipative uncertainty and nonlinear perturbation[J].Systems & Control Letters,1997,29(3):255-268.
  • 5Yang G H,Wang J L,Soh Y C.Reliable H∞ controller design for linear systems[J].Automatica,2001,37(5):717-725.
  • 6Yang G H,Wang J L,Lin C.H∞ control for linear systems with additive controller gain uncertainty[J].International Journal of Control,2000,73(16):1500-1506.
  • 7De Souza C E,Li X.Delay-dependent robust H∞ control of uncertain linear state-delayed systems[J].Automatica,1999,35(7):1313-1321.
  • 8Yang G H,Wang J L,Soh Y C,et al.Reliable state feedback control synthesis for uncertain linear systems[J].Asian Journal of Control,2003,5(2):301-308.
  • 9Li Z H,Shao H H,Wang J H.Dissipative control for linear time-delay systems[J].Control Theory and Applications,2001,18(5):838-842.
  • 10徐皑冬,王宏,杨志家.基于以太网的工业控制网络[J].信息与控制,2000,29(2):182-186. 被引量:130

共引文献68

同被引文献13

  • 1刘明哲,徐皑冬,赵伟.基于IEEE1588的时钟同步算法软件实现[J].仪器仪表学报,2006,27(z3):2009-2011. 被引量:36
  • 2桂康,杨佃福,谷海波.工业测控EPA网络系统的时间同步分析与实现[J].武汉理工大学学报,2006,28(2):65-69. 被引量:8
  • 3桂本烜,冯冬芹,褚健,金建祥.IEEE1588的高精度时间同步算法的分析与实现[J].工业仪表与自动化装置,2006(4):20-23. 被引量:26
  • 4王飞雪,王平,谢昊飞.IEEE1588时间同步协议在Linux下的分析与实现[J].微计算机信息,2006,22(12S):283-285. 被引量:7
  • 5GUSELLA R,ZATTI S. The accuracy of the clock synchronization achieved by TEMPO in berkely unix 4.3BSD[J]. IEEE Transactions on Software Engineering, 1989,15(7) :847- 852.
  • 6GADERER G,SAUTER T. Strategies for clock synchronization in powerline networks[EB/OL]. (2003-08-16) [2009-03- 10]. http : // www.ieel a.pt / 1 se / rtn2004 / preprints / 16 - prep.pdf.
  • 7FERRARI P. IEEE1588-based synchronization system for a displacement sensor network[C]//Instrumentation and Measurement Technology Conference,2006. IMTC 2006. Proceedings of the IEEE. Sorrento,haly:IEEE,2006:1926- 1930.
  • 8RODROGUES S. IEEE-1588 and Synchronous Ethernet in telecom[C]//Precision Clock Synchronization for Measurement, Control and Communication,2007,ISPCS 2007. Vienna,Austria:IEEE, 2007 : 138 - 142.
  • 9HoLLER R,SANTER T,KERO N. Embedded SynUTC and IEEE 1588 clock synchronization for industrial Ethemet[C]//Proceedings of Emerging Technologies and Factory Automation. Lissabon, Portugal : IEEE, 2003 : 422- 426.
  • 10IEEE Instrumentation and Measurement Society. IEEE standard for a precision clock synchronization protocol for networked measurement and control systems[S]. New York,USA:IEEE,2002.

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