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1996 Fiscal Year Final Research Report Summary

A Self-Learning Neural Network LSI Employing Random Noise Generator

Research Project

Project/Area Number 07505027
Research Category

Grant-in-Aid for Scientific Research (A)

Allocation TypeSingle-year Grants
Section試験
Research Field Electronic materials/Electric materials
Research InstitutionTOHOKU UNIVERSITY

Principal Investigator

SHIBATA Tadshi  Associate Professor Dept. Electronic Engineering, Tohoku University, 工学部, 助教授 (00187402)

Co-Investigator(Kenkyū-buntansha) KOTANI Koji  Research Associate Dept. Electronic Engineering, Tohoku University, 工学部, 助手 (20250699)
Project Period (FY) 1995 – 1996
KeywordsThermal Noise / Source Follower / Anti-Miller Effect / CMOS / Random Noise / Silicon Retina / focal plane processor
Research Abstract

Generation of spatially and temporary random noise is essential in implementing intelligent information processing systems like neural networks as integrated circuits hardware. However, this has been a very difficult task. The voltage fluctuation appearing across the two terminals of a resistor due to the random motion of electrons is known as thermal noise, which is known as white noise. If such thermal noise is amplified to an appropriate level for circuit operation, it provides a very good noise source. However, the output is band limited due to the RC circuitry composed of the noise source resistor and the input capacitance of the amplifier, resulting in the available noise power of kT/C.This is only the order of mV for typical amplifiers. We resolved the problem by utilizing the "Anti-Miller Effect" of a source follower which we discovered. In a source follower the input capacitance becomes almost zero due to its almost unity gain. Further more CMOS inverter was utilized as a noise source resistor, yielding better whiteness of the noise. As a result, we developed a random-noise generator composed of only eight transistors and the performance has been experimentally verified. For neural processing, we have developed a retina processing chip which performs noise filtering, edge enhancement by two-dimensional Laplacian processing, and edge detection. The basic operation of the test circuit has been also verified experimentally. By injecting random noise to the pixel processing, we have found that a missing feature can be restored by stochastic resonance. In this manner, the important role of random noise generation in intelligent data processing has been demonstrated.

  • Research Products

    (6 results)

All Other

All Publications (6 results)

  • [Publications] 黄景 宏、柴田 直、大見 忠弘: "「CMOSソースフォロワのアンチミラー効果を用いた無相関ノイズ発生器" 平成8年度電気関係学会連北支部連合大会講演論文集. 325 (1996)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] K.H.Wee, T, Shibata 他: "A Simple CMOS Random Noise Generator Employing Anti Miller Effect" Proceedings of the 6th International Conference on Microelectronics for Neural Networks(Micro Neuro ‘97). 181-188 (1997)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] 黄景 宏、柴田 直、大見 忠弘: "アンチミラー効果を用いたCMOSランダムノイズ発生器" 第1回システムLSI琵琶湖ワークショップ講演資料集. 449-453 (1997)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] Keng Hoong Wee, Tadashi Shibata, and Tadahiro Ohmi: ""Uncorrelated Noise Generator Employing Anti-Miller Effect of CMOS Source Follower"" Technical Digest, 1997 Electrical Engineers Annual Meeting in Tohoku Area, (in Japanese). [Outstandeing Student Paper Award]. 325

    • Description
      「研究成果報告書概要(欧文)」より
  • [Publications] Keng Hoong Wee, Tadashi Shibata, and Tadahiro Ohmi: ""A Simple CMOS Random Noise Generator Employing Anti-Miller Effect"" Proceedings of the 6th International Conference on Microelectronics for Neural Networks, Evolutionary & Fuzzy Systems (MicroNeuro '97) Dresden, Germany. 181-188 (1997)

    • Description
      「研究成果報告書概要(欧文)」より
  • [Publications] Keng Hoong Wee, Tadashi Shibata, and Tadahiro Ohmi: ""A CMOS Random Noise Generator Employing Anti-Miller Effect Source Follower"" Proceedings of the First System LSI Workshop at Biwako (in Japanese). 449-453

    • Description
      「研究成果報告書概要(欧文)」より

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Published: 1999-03-16  

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