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WigunaCandra Adi 研究業績一覧 (29件)
論文
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Candra Adi Wiguna,
Kyohei Kiyota,
Akira Chiba,
Omer Gundogmus,
Yilmaz Sozer,
Ohashi Atsuya,
Junichi Asama,
Christopher H. T. Lee.
Investigation of Effective Cases of Radial Force Sum Flattening for Acoustic Noise Reduction in Four Three-Phase Switched Reluctance Motors With Different Pole Configuration,
IEEE Transactions on Industry Applications,
2024.
公式リンク
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Yifei Cai,
Haruki Sobue,
Candra Adi Wiguna,
Akira Chiba,
Souichiro Yoshizaki,
Kunihiro Senda.
Radial Electromagnetic Force Estimation Using Strain Gauges in Switched Reluctance Motors,
vol. 59,
no. 2,
pp. 1242-1252,
Mar. 2023.
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C. A. Wiguna,
Y. Cai,
L. Sarah,
J. Furqani,
Y. Fujii,
K. Kiyota,
A. Chiba.
Vibration and Acoustic Noise Reduction in Switched Reluctance Motor by Selective Radial Force Harmonics Reduction,
IEEE Open Journal of Industry Applications,
Volume 4,
pp. 23-34,
Dec. 2022.
公式リンク
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Y. Cai,
C. A. Wiguna,
Y. Fujii,
K. Kiyota,
H. Sugimoto,
A. Chiba.
Estimation of Electromagnetic Force Using Strain Gauges Attached to Iron Cores,
IEEE Transactions on Industry Applications,
Vol. 58,
No. 6,
pp. 7143 - 7152,
Nov. 2022.
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Candra Adi Wiguna,
Jihad Furqani,
Akira Chiba.
Improved Current Profile Selection for Noise Reduction of Switched Reluctance Motor at Middle Speed Considering Back EMF,
IEEE Transactions on Industry Applications,
Vol. 57,
No. 5,
pp. 4707-4719,
Sept. 2021.
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Jihad Furqani,
Candra Adi Wiguna,
Akira Chiba,
Omer Gundogmus,
Yilmaz Sozer,
Agus Purwadi.
Experimental Verification of Acoustic Noise and Radial Force Sum Variation in Switched Reluctance Motor,
IEEE Transactions on Industry Applications,
vol. 57,
no. 3,
pp. 481-2493,
May 2021.
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Jihad Furqani,
Masachika Kawa,
Candra Adi Wiguna,
Nanaho Kawata,
Kyohei Kiyota,
Akira Chiba.
Current Reference Selection for Acoustic Noise Reduction in Two Switched Reluctance Motors by Flattening Radial Force Sum,
IEEE Transactions on Industry Applications,
vol. 55,
no. 4,
pp. 3617-3629,
July 2019.
公式リンク
国際会議発表 (査読有り)
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Candra Adi Wiguna,
Kyohei Kiyota,
Yifei Cai,
Akira Chiba.
Dynamics Condition in 6/10 Switched Reluctance Motor with Noise Reduction by Selective Radial Force Harmonics Reduction,
2023 IEEE Energy Conversion Congress and Exposition (ECCE),
pp. 5049 - 5054,
Oct. 2023.
公式リンク
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Akira Chiba,
Candra Adi Wiguna,
Kyohei Kiyota,
Yilmaz Sozer,
Omer Gundogmus,
Asama Junichi,
Atsuya Ohashi.
Investigation of Effective Conditions of Radial Force Sum Flattening for Acoustic Noise Reduction in Switched Reluctance Motors,
2022 IEEE Energy Conversion Congress and Exposition (ECCE),
Oct. 2022.
公式リンク
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Yifei Cai,
Haruki Sobue,
Candra Adi Wiguna,
Akira Chiba,
Kunihiro Senda,
Souichiro Yoshizaki.
Analytical and Experimental Investigations of Magnetostriction Influence on Strain Measurement in Switched Reluctance Machines,
2021 IEEE Energy Conversion Congress and Exposition (ECCE),
Nov. 2021.
国際会議発表 (査読なし・不明)
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Candra Adi Wiguna,
Yifei Cai,
Atsuya Ohashi,
Jihad Furqani,
Junichi Asama,
Akira Chiba.
The Effectiveness of Radial Force Sum Flattening for Vibration Mode 0 and Noise Reduction in Switched Reluctance Motor,
2020 IEEE ECCE,
pp. 4689-4696,
Oct. 2020.
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Yifei Cai,
Candra Adi Wiguna,
Hiroya Sugimoto,
Akira Chiba.
Analytical and Experimental Investigations of Radial Force Detection by Strain Gauge for Possible Application for Switched Reluctance Machines,
2020 IEEE ECCE,
pp. 4716-4723,
Oct. 2020.
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Candra Adi Wiguna,
Jihad Furqani,
Akira Chiba.
Improved Current Profile for Noise Reduction of Switched Reluctance Motor,
2019 IEEE ECCE,
pp. 5231-5237,
Oct. 2019.
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Jihad Furqani,
Candra Adi Wiguna,
Akira Chiba.
Analytical and Experimental Verification of Novel Current Waveforms for Noise Reduction in Switched Reluctance Motor,
IEMDC2019,
pp. 576-583,
May 2019.
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Candra Adi Wiguna,
Jihad Furqani,
Akira Chiba.
Study of Rotor Pole Optimization of Switched Reluctance Motor For Reducing RMS Current in Flattening Radial Force Sum,
Aug. 2018.
国内会議発表 (査読なし・不明)
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Lim Sarah Lilian,
Candra Adi Wiguna,
Akira Chiba.
Frame Effects on the Acoustic Noise of Switched Reluctance Motors,
令和3年電気学会全国大会,
Mar. 2021.
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Candra Adi Wiguna,
Yifei Cai,
Akira Chiba.
Effectiveness of Flattening Radial Force Sum for Mode 0 Vibration and Noise Reduction in Traction Switched Reluctance Motor,
令和3年電気学会全国大会,
Mar. 2021.
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蔡 一飛,
Wiguna Candra Adi,
祖父江 悠気,
千葉 明.
ひずみゲージによるリラクタンスモータのラジアル力測定の可能性,
令和3年電気学会全国大会,
Mar. 2021.
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蔡 一飛,
Wiguna Candra Adi,
杉元 紘也,
千葉 明.
ひずみゲージによるモータ電磁力の測定,
電気学会モータドライブ・回転機・リニアドライブ合同研究会,
pp. 97-98,
Sept. 2020.
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Candra Adi Wiguna,
Yifei Cai,
Kyohei Kiyota,
Akira Chiba.
Flattening Radial Force Sum Method for Noise Reduction in 18-12 Pole Switched Reluctance Motor in Middle Speed Operation,
電気学会モータドライブ・回転機・リニアドライブ合同研究会,
pp. 93-95,
Sept. 2020.
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Candra Adi Wiguna,
Jihad Furqani,
Ihi Sai,
Akira Chiba.
Flattening Radial Force Sum for Noise Reduction of Switched Reluctance Motor at High Speed Operation,
2019年電気学会産業応用部門大会,
Aug. 2019.
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Ihi Sai,
Akira Chiba,
Jihad Furqani,
Candra Adi Wiguna.
Effectiveness Verification of ANSYS Maxwell Three Time Decomposition Methods in TSUBAME Supercomputer,
2019年電気学会産業応用部門大会,
Aug. 2019.
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Candra Adi Wiguna,
Jihad Furqani,
Akira Chiba.
Improved Current Profile Derivation Process for Noise Reduction of Switched Reluctance Motor at High Speed Operation,
平成31年電気学会全国大会,
pp. 111-112,
Mar. 2019.
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Jihad Furqani,
Candra Adi Wiguna,
Akira Chiba.
Effectiveness of Flattening Radial Force Sum in Reduced Number of Pole Switched Reluctance Motors,
平成31年電気学会全国大会,北海道科学大学,
pp. 113-114,
Mar. 2019.
特許など
学位論文
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Study of Noise Reduction of Switched Reluctance Motor in Traction and Industrial Applications,
Thesis,
Doctor (Engineering),
Tokyo Institute of Technology,
2023/03/26,
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Study of Noise Reduction of Switched Reluctance Motor in Traction and Industrial Applications,
Outline,
Doctor (Engineering),
Tokyo Institute of Technology,
2023/03/26,
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Study of Noise Reduction of Switched Reluctance Motor in Traction and Industrial Applications,
Exam Summary,
Doctor (Engineering),
Tokyo Institute of Technology,
2023/03/26,
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Study of Noise Reduction of Switched Reluctance Motor in Traction and Industrial Applications,
Summary,
Doctor (Engineering),
Tokyo Institute of Technology,
2023/03/26,
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