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组合逻辑电路自动合成算法的硬件实现 被引量:4

Implementation of Automatic Synthesis of Combinational Logic Circuit
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摘要 根据FPGA的并行工作方式以及高速、高集成度的特点,采用Handel-C语言对改进型基因表达式克隆选择算法(IGE-CSA)进行编程。在基于FPGA的硬件平台上,实现了组合逻辑电路的自动合成。实验结果表明,采用基于FPGA硬件平台自动合成组合逻辑电路的方法,能获得更好更新颖的组合逻辑电路,同时减轻了设计者的负担,降低了组合逻辑电路的设计成本,为组合逻辑电路的自动合成方法得到实际应用提供了可能。 An improved gene expression-based clonal selection algorithm(IGE-CSA) for automatic synthesis of combinational logic circuit was implemented using Handel-C language on FPGA,which features parallel and high-speed operation,as well as high integration density.Experimental results indicated that the combinational logical circuits synthesized on FPGA had better topology,and the new method,which made the design work easier and therefore reduced its cost,provided a practical approach to automatically synthesizing combinational logic circuits.
出处 《微电子学》 CAS CSCD 北大核心 2011年第6期876-882,共7页 Microelectronics
关键词 组合逻辑电路 基因表达式克隆选择算法 现场可编程门阵列 HANDEL-C语言 Combinational logic circuit IGE-CSA FPGA Handel-C language
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参考文献7

  • 1GAN Z H, SHANG T, SHI G, et al. Automatic synthesis of combinational logic circuit with gene expression-based clonal selection algorithm [C] // 4^th Int Conf Natural Computation. Jinan, China. 2008, 6: 278-282.
  • 2GAN Z H, YANG Z K, LI G B, et al. Automatic modeling of complex functions with clonal selection- based gene expression programming [C] // 3^rd Int Conf Natural Computation. Haikou, China. 2007, 41 228-232.
  • 3BOWEN. Handel-C Language Reference Manual EEB/ OL]. http://www, pa. msu. edu/hep/d0/12/Handel- C/Handel C. PDF, 2005.
  • 4DE CASTRO L N, VON ZUBEN F J. Learning and optimization using the clonal selection principle [J]. IEEE Trans Evolutionary Computation, Special Issue on Artificial Immune Systems, 2002, 6(3): 239-251.
  • 5DE CASTRO L N, VON ZUBEN F J. The clonal selection algorithm with engineering applications [C] // Proe GECO00, Works Artificial Immune Syst Their Applic. 2000: 36-37.
  • 6FERREIRA C. Gene expression programming., mathematical modeling by an artificial intelligence [M]. Hei- delberg:Springer, 2006.
  • 7胡涛,郭立,黄昊,刘军.一种新的混沌随机数生成器实现方案[J].电子技术应用,2006,32(6):51-53. 被引量:3

二级参考文献6

  • 1Stojanovski T,Kocarev L.Chaos-based random number generators-part Ⅰ.IEEE Transactions on Circuits and Systems,2001;(3):281 ~288
  • 2Petrie C S,Connelly J A.A noise-based IC random number generator for applications in cryptography.IEEE Trans.Circuits Syst,2000;47(5):615 ~621
  • 3Chua L O,Yao Y,Yang Q.Generating randomness from chaos and constructing chaos with desired randomness.Int J Circuit Theory Appl,1990;18:215~240
  • 4Paul S.Little known characteristics of phase noise.Applications Note AN-741,Analog Devices,www.analog.com
  • 5Petrie C S,Connelly J A.Modeling and simulation of oscillator-based random number generators.In:Proc.ISCAS' 96,vol.4,May 1996:324~327
  • 6National Institute of Standards and Technology,Kanata,ONT,Canada.Security requirements for cryptographic modules.FIPS PUB 140-2,Dec 2002

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