Search Results1-20 of  31

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  • 藤田 秀紀 ID: 9000001401179

    Articles in CiNii:1

    • 電力・エネルギー部門大会座長のコメントと回答 : 36 風力発電・発電機I (2004)
  • 藤田 秀紀 ID: 9000007752098

    Articles in CiNii:4

    • フライホイ-ルを使用した無停電電源装置 (1996)
    • 実系統による発電機安定度監視装置の検証試験結果 (1988)
    • 系統間並列現象の模擬送実験による検討 (1988)
  • 藤田 秀紀 ID: 9000021435432

    (財)ファインセラミックスセンター (2008 from CiNii)

    Articles in CiNii:1

    • JFCCナノ構造研究所 (2008)
  • 藤田 秀紀 ID: 9000241769022

    Articles in CiNii:1

    • Distribution of JFCC's Reference Materials (2013)
  • 藤田 秀紀 ID: 9000410172543

    Articles in CiNii:1

    • 2019 Panel Exhibition and Lectures : Pioneers of Industry and Production Technology in Chubu (2020)
  • FUJITA Hideki ID: 9000256249333

    中部電力 (株) 電力技術研究所 (2006 from CiNii)

    Articles in CiNii:1

    • Study on the Output Power Characteristic of a Shape Memory Alloy Engine (2006)
  • FUJITA Hidenori ID: 9000284285291

    KYOKUGEN Osaka Univ. (2014 from CiNii)

    Articles in CiNii:1

    • 9aPS-122 Resistance measurement of K_xFe_<2-y>Se_2 under high pressure (2014)
  • FUJITA Hidenori ID: 9000312840364

    KYOKUGEN Grad. Sch. Eng. Sci. Osaka Univ. (2015 from CiNii)

    Articles in CiNii:1

    • 24aPS-59 鉄系超伝導K_xFe_<2-y>Se_2の高圧力下の電気抵抗測定II (2015)
  • Fujita H. ID: 9000264249504

    Osaka Univ. (2014 from CiNii)

    Articles in CiNii:1

    • 30pCE-2 X-ray diffraction and resonant inelastic x-ray scattering measurements of Fe-based superconductor K_xFe_<2-y>Se_2 under high pressure (2014)
  • Fujita H. ID: 9000331906803

    KYOKUGEN, Grad. Sch. Eng. Sci., Osaka Univ. (2016 from CiNii)

    Articles in CiNii:1

    • 21aPS-31 High temperature superconductivity of (NH_3)_yLi_xFeSe at high pressure (2016)
  • Fujita H ID: 9000004482162

    中部電力(株)電力技術研究所 (2010 from CiNii)

    Articles in CiNii:91

    • An experimental consideration of SMES usage considering loss at energy conversion (1995)
    • A Solution Method for Large-Scale Unit Commitment Using Genetic Algorithm (1998)
    • High-Frequency Equivalent Circuit of Induction Motor Driven by PWM Inverter (1999)
  • Fujita Hideki ID: 9000255944003

    Chubu Electric Power Co., Inc. (1997 from CiNii)

    Articles in CiNii:1

    • High-Frequency Equivalent Circuit of Induction Motor Driven by PWM Inverter (1997)
  • Fujita Hideki ID: 9000256836039

    Chubu Electric Power Co., Inc. (2001 from CiNii)

    Articles in CiNii:1

    • Searching Method of Harmonic Source in Electric Power System Utilizing Active Filter Based on Harmonic current and voltage Vector Loci (2001)
  • Fujita Hideki ID: 9000391532001

    Chubu Electric Power Co., Inc. (1990 from CiNii)

    Articles in CiNii:1

    • Confirmation of Preventive Control of Superconductive Magnetic Energy Storage System to Voltage Collapse (1990)
  • Fujita Hideki ID: 9000391532280

    Chubu Electric Power Co., Inc. (1998 from CiNii)

    Articles in CiNii:1

    • A Solution Method for Large-Scale Unit Commitment Using Genetic Algorithm (1998)
  • Fujita Hideki ID: 9000391532375

    Chubu Electric Power Co. (2002 from CiNii)

    Articles in CiNii:1

    • A Study on Unit Commitment Problem with Transmission Constraints (2002)
  • Fujita Hideki ID: 9000391533077

    Chubu Electric Power Co., lnc. (2002 from CiNii)

    Articles in CiNii:1

    • Stabilization Control for Multi-Machine Power System using Decentralized H∞ Excitation Controller Realizing Terminal Voltage Control and Damping Control (2002)
  • Fujita Hideki ID: 9000391533198

    Chubu Electric Power Co., Inc. (2002 from CiNii)

    Articles in CiNii:1

    • Maximum Power Point Tracking Control for Wind Power Generating System Using Permanent Magnet Synchronous Generator (2002)
  • Fujita Hideki ID: 9000391536558

    Chubu Electric Power Co., Inc. (2001 from CiNii)

    Articles in CiNii:1

    • Application of Phasor Measurement Method to Frequency Detection of Power System (2001)
  • Fujita Hideki ID: 9000391538535

    Chubu Electric Power Co., Inc. (2000 from CiNii)

    Articles in CiNii:1

    • Difference of effect of Superconducting Fault Current Limiter Introduced into Electric Power System due to Resitive-Type, Reactive-Type and Their Introduction Location (2000)
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