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隶属函数硬件化设计方法研究进展 被引量:1

Design methods membership function in Hardware
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摘要 隶属函数是模糊推理系统的关键组成部分,其硬件化设计是模糊推理系统硬件化设计的前提和基础.综述了国内外近15年来隶属函数模拟电路硬件化设计的方法,介绍了3种不同类型约15个具体隶属函数电路的实现原理及其相关性能,所能生成的隶属函数形状包括梯形、三角形、高斯型、S型和Z型以及任意形状.为研究开发新的隶属函数硬件化电路,实现模糊推理系统硬件化设计提供了理论依据和技术参考. The membership function is a critical part in the fuzzy reasoning system, whose circuit design is the premise and groundwork to perform the inference by circuit. The analog circuit design of membership function since 1990 is systematically summarized, and the realization principles and performance of three kinds of membership functions, including fifteen circuits are discussed. The forms of membership functions built from these circuits are trapezoid, triangle, Gauss, S, Z, and even freewill.
出处 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2004年第8期1004-1007,共4页 Journal of Harbin Institute of Technology
基金 国家自然科学青年基金资助项目(59908001) 哈尔滨工业大学跨学科交叉性研究基金资助项目(HIT.MD200030).
关键词 隶属函数电路 硬件化设计 模拟电路 性能分析 模糊推理系统 界限差电路 Computer circuits Design Fuzzy sets Membership functions
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参考文献5

  • 1[2]YAMAKAWA T, MIKI T, UENO F. The design and fabrication of the current mode fuzzy logic semi - custom IC in the standard CMOS IC technology[A]. Proc IEEE Int Symp Multiple - Valued Logic [ C ]. Ontario: [ s.n. ] , 1985.76 - 82.
  • 2[3]GUO S, PETERS L, SURMANN H. Design and application of an analog fuzzy logic controller [ J ]. IEEE Trans on Fuzzy Syst, 1996, 4(4) :429 -438.
  • 3[4]TOGAI M, WATANABE H. A VLSI implementation of a fuzzy inference engine: toward an expert system on a chip [J]. Inform Sci, 1986, 38:147 - 163.
  • 4[5]GUO S, PETERS L. A high-speed co-processor implemented in analogue/digital technique [ J ]. Computers & Electrical Engineering, 1998, 24: 89 - 98.
  • 5[6]BOURAS S, KOTRONAKIS M, SUYAMA K, et al.Mixed analog-digital fuzzy logic controller with continuous- amplitude fuzzy inferences and defuzzification[ J].IEEE Trans on Fuzzy Syst, 1998, 6(2) :205 -215.

同被引文献15

  • 1[1]ZRILIC D G. Hardware implementations of fuzzy membership function, operations, and inference [ J ]. Computers and Electrical Engineering, 2000, 26: 85 - 105.
  • 2[2]TOGAI M, WATANABE H. A VLSI implementation of a fuzzy inference engine: Toward an expert system on a chip[J]. Inform Sci, 1986, 38:147 - 163.
  • 3[4]BOURAS S, KOTRONAKIS M, SUYAMA K, et al.Mixed analog - digital fuzzy logic controller with continuous -amplitude fuzzy inferences and defuzzification [ J ].IEEE Trans on Fuzzy Syst, 1998, 6(2) :205 -215.
  • 4[5]GUO S, PETERS L. A high - speed co - processor implemented in analogue/digital technique[ J ]. Computers & Electrical Engineering, 1998, 24:89 - 98.
  • 5[7]IKEDA H, HIRAMOTO Y, KISU N. A fuzzy inference processor with an ' Active - Rule - Driven' architecture [ A]. 1991 Symposium on VLSI Circuits[C]. OiSi: [s.n.], 1991.
  • 6[9]UNGERIG A, GOSER K. Architecture of a 64 - bit fuzzy inference processor[ A]. Porc 3rd IEEE Int Conf Fuzzy Logic Syst[C]. Orlando:[s.n. ], 1994. 1776-1780.
  • 7[11]PATYRA J, GRANTNER L. Hardware implementations of digital fuzzy logic controllers [ J ]. Information Sciences, 1999, 113:19-54.
  • 8[12]MANARESI N, FRANCHI E, GUERRIERI R , et al. A modular analog architecture for fuzzy controllers [ A ].Proc Eur Solid-State Circuits Conf [ C ]. [ s. l. ]: [ s.n. ], 1994. 228-291.
  • 9[13]LANDOLT O. Efficient analog CMOS implementation of fuzzy rules by direct synthesis of multidimensional fuzzy subspaces [ A ]. Proc FUZZ - IEEE [ C ]. San Francisco:[s.n. ], 1993. 453-458.
  • 10[14]HOWARD N, TAYLOR R. The design and implementation of a massively - parallel fuzzy architecture [ A ].Proc 1st Int Conf Fuzzy Syst[C]. San, Diego: [s. n. ],1992. 545-552.

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