期刊文献+

基于确定与随机Petri网的CAN总线建模及性能研究

Modeling and research of CAN bus based on DSPN
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摘要 针对CAN总线协议栈结构,利用确定与随机Petri网(DSPN)对其进行建模,得出CAN总线的DSPN紧缩模型。通过软件DSPNexpress-NG得出吞吐量、平均延迟及消息成功传输概率等性能参数,揭示了CAN总线工作的统计规律。 Comparing with the protocol stack, a compact DSPN model of CAN bus is concluded in this paper. Via software DSPNexpress-NG, some performance parameters such as throughput, average delay, message transmitting success probability are given, which discover the statistic working theory of CAN.
作者 陆洁
出处 《燕山大学学报》 CAS 2008年第6期497-502,共6页 Journal of Yanshan University
关键词 CAN总线 确定与随机PETRI网 紧缩模型 DSPNexpress-NG CAN bus deterministic and stochastic petri net compact model DSPNexpress-NG
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参考文献6

  • 1Navet N, Song Y Q, Simonot F. Worst-case deadline failure probability in real-time applications distributed over CAN (controller area network) [J]. Journal ofSystemsArchitecture, 2000,46 (7): 1-16.
  • 2史久根,张培仁.CAN总线在实时系统中应用的研究[J].中国科学技术大学学报,2005,35(2):195-201. 被引量:27
  • 3冯谦,郭万林.CAN总线的时间触发调度方法设计及实验研究[J].信息与控制,2005,34(2):209-213. 被引量:7
  • 4German R, Heindl A. Performance evaluation of IEEE 802.11 wireless LANs with stochastic Petri nets [C] //Proceedings of the 8th International Workshop on Petri Nets and Performance Models, Zaragoza, Spain, 1999: 44-53.
  • 5Cavalieri S, Stefano A, Mirabella O. Mapping automotive process control on IEC/ISA FieldBus functionalities [J]. Computers in Industry, 1996,28 (3): 233-250.
  • 6Christoph Lindemann, Gerald S Shedler. Numerical analysis of deterministic and stochastic petri nets with concurrent deterministic transitions [J]. Performance Evaluation, 1996,27-28 (10): 565-582.

二级参考文献15

  • 1Cena G, Valenzano H. An improved CAN fieldbus for industrial applications [ J ]. IEEE Transactions on Industrial Electronics, 1997, 44(4) :553 ~564.
  • 2Livani M A, Kaiser K, Jia W. Scheduling hard and soft real-time communication in a controller area network [ J ]. Control Engineering Practice, 1999, 7(12) :1515 ~ 1523.
  • 3Leen G, Heffeman D. TTCAN: a new time-triggered controller area network [ J ]. Microprocessors and Microsystems, 2002, 26 (2) :77 ~94.
  • 4Ryan C, Heffernan D, Leen G. Clock synchronization on multiple TTCAN network channels [ J ]. Microprocessors and Microsystems, 2004, 28(3):135~146.
  • 5Vitturi S. On the use of Ethernet at low level of factory communication systems [J]. Computer Standards & Interfaces, 2001, 23 (4) :267 ~277.
  • 6Almeida L, Pedreiras P, Alberto J, et al. The FTT-CAN protocol: why and how [ J ]. IEEE Transactions on Industrial Electronics, 2002, 49(6) :1189 ~ 1201.
  • 7Doyle P, Heffernan D, Duma D. A time-triggered transducer network based on an enhanced IEEE 1451 model [ J]. Microprocessor and Microsystems, 2004, 28 ( 1 ): 1 ~ 12.
  • 8Albert A, Strasser R, Trachtler A. Migration from CAN to TTCAN for a distributed control system [ A]. 9th International CAN Conference' [ C]. Munich:2003.9 ~ 16.
  • 9张培仁.自动控制技术和应用[M].合肥:中国科学技术大学出版社,2001..
  • 10Almeida Luis.The Fq'T-CAN protocol:why and how[J].IEEE Transactions on Industrial Electronics,2002,49(6):1 189-1 201.

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