期刊文献+

一种具有自修复功能的容错数字电路 被引量:1

A fault-tolerant digital circuit with self-repairing
下载PDF
导出
摘要 提出了一种针对数字电路的自修复容错方法。该方法基于胚胎细胞的可重构特性理论,用休眠细胞代替故障细胞的功能达到容错的目的。对应用实例的分析表明:在相同系统资源的情况下,所提出的方法在容错单元数上能达到整列排除法的4倍。 A self-repairing and fault-tolerant method for digital circuit is presented. This method is based on the embryonic cells' reconstructed theory that resting cells replace function failure cells to achieve the purpose of fault-tolerant. The analysis of application example shows: in the same system resources, compared with entire column exclusion method, the fault-tolerant performance is more effective according to method proposed in this paper.
出处 《电子技术应用》 北大核心 2010年第10期40-43,共4页 Application of Electronic Technique
关键词 自修复 容错 数字电路 self-repairing fault-tolerant digital circuit
  • 相关文献

参考文献6

  • 1ZHU M, WWN Y. Fault tolerance system of digital circuit in dynamically reconfigurable FPGA [J]. Southeast Univ (natural science edition), 2000,30(4) : 138-142.
  • 2朱明程,温粤.FPGA动态可重构数字电路容错系统的研究[J].东南大学学报(自然科学版),2000,30(4):138-142. 被引量:19
  • 3AKOGLU A,SREERAMAREDDY A, JOSIAH J G.FPGA based distributed self healing architecture for reusable systenas[J].Cluster Comput, 2009(12) : 269-284.
  • 4龚健,杨孟飞,文亮.面向进化容错的FPGA故障模型研究[J].中国空间科学技术,2009,29(3):57-63. 被引量:1
  • 5SAHNI V, PREM P V.An embryonic approach to reliable digital instrumentation based on evolvable hardware[J].IEEE Trans Instrum Meas, 2003,52(6):1696-1702.
  • 6ZHANG Zhai,WANG You Ren,YANG Shan shah.The research of self-repairing digital circuit based on embryonic cellular array.Neural Comput & Applic, 2008(17) : 145-151.

二级参考文献7

  • 1JOHN M EMMERT,CHARLES E STROUD,JAMES R BAILEY.A new bridging fault model for more accurate fault behavior[C].IEEE Proceedings of AUTOTESTCON,2000:481-485.
  • 2ABDERRAHIM DOUMAR,HIDEO ITO.Detecting,diagnosing,and tolerating faults in SRAM-based field programmable gate arrays:a survey[J].IEEE Transactions on Very Large Scale Integration (VLSI) Systems,June 2003,11(3):386-405.
  • 3FERNANDA LIMA KASTENSMIDT,LUIGI CARRO,RICARDO REIS.Fault-tolerance techniques for SRAM-based FPGAs[M].Springer,2006.
  • 4FUKUNAGA A,HAYWORTH K,STOICA A.Evolvable hardware for spacecraft autonomy[C].IEEE Proceedings of Aerospace Conference,21-28 March,1998,3:135-143.
  • 5CANHAM R O,TYRRELL A M.Evolved fault tolerance in evolvable hardware[C].IEEE Proceedings of the 2002 Congress on Evolutionary Computation,12-17 May,2002,2:1267-1271.
  • 6ANDRES UPEGUI,EDUARDO SANCHEZ.Evolving hardware with self-reconfigurable connectivity in Xilinx FPGAs[C].First NASA/ESA Conference on Adaptive Hardware and Systems,IEEE,15-18 June,2006:153-162.
  • 7朱明程,李昆华,李远辉.智能一氧化碳报警器原理与设计[J].电子技术应用,1998,24(3):68-70. 被引量:10

共引文献18

同被引文献12

  • 1林勇,罗文坚,钱海,王煦法.n×n阵列胚胎电子系统应用中的优化设计问题分析[J].中国科学技术大学学报,2007,37(2):171-176. 被引量:9
  • 2Tempesti G, Mange D, StauKer A. Ernbryonics: multi-cel- lular and multi-molecular digital systems[C]// Proceedings of 1EEE Half-day Colloquium on Evolutionary Hardware Systems. London, UK, 1999: 1-4.
  • 3Canham R, Tyrrell A. An embryonic array with im- proved efficiency and fault tolerance[C]// Proceedings of NASA/DoD Conference on Evolvable Hardware. Chicago, 2003 : 265-272.
  • 4Prodan L,Udrescu M, Vladutiu M. Self-repairing em-bryonic memory arrays[C]// proceedings of NASA/ DoD Conference on Evolvable Hardware. Washington, 2004: 130-137.
  • 5Szasz C, Chindris V. Development strategy and imple- mentation of a generalized model for FPGA-based arti- ficial cell in bio-inspired hardware systems[C]// IEEE International Conference on Industrial Informatics. Cardiff, Wales, UK, 2007: 639-643.
  • 6Boesen M R, Madsen J. eDNA: A bio-inspired recon- figurable hardware cell architecture supporting self-or- ganisation and self-healing [ C ] // Proceedings of NASA/ESA Conference on Adaptive Hardware and Systems. Lyngby, Denmark, 2009: 147-154.
  • 7Boubekeur A, PatryJ L, Saucier G,et al. et al. A full experience of designing a wafer scale 2D array Wafer Scale Integration[C] // Proceedings of the fifth Annual IEEE International Conference on Wafer Scale Integra- tion. San Francisco, CA, USA,1993:36-46.
  • 8沈绪榜.MPP系统芯片体系结构技术的发展[J].中国科学(E辑),2008,38(6):933-940. 被引量:6
  • 9郝国锋,王友仁,张砦,孙川.可重构硬件内建自测试与容错机制研究[J].仪器仪表学报,2011,32(4):856-862. 被引量:20
  • 10李涛,肖灵芝.面向图形和图像处理的轻核阵列机结构[J].西安邮电学院学报,2012,17(3):41-47. 被引量:30

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部