北陸先端科学技術大学院大学 [JAIST] - 研究者総覧
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鵜木 祐史 (ウノキ マサシ) 教授
情報科学系、ヒューマンライフデザイン領域

291件中61-80件目

  • 61. Analysis of modulation-spectral features extracted from Japanese emotional speech,Zhi Zhu, Ryota Miyouchi, and Masashi Unoki,日本音響学会聴覚研究会資料, vol. 45, no. 7, H-2015-104, pp. 589-594, Oct. 2015,台湾・台湾国立清華大学,2015/10/23
  • 62. Data Hiding Scheme for AM Radio Broadcast Using Blind Watermarking Technique,Nhut Minh Ngo and Masashi Unoki,IEICE Technical Report, EMM2015-54, pp. 53-58, Nov. 2015.,熊本大学,2015/11/13
  • 63. 振幅変調音のピッチ知覚に基づいた基本周波数推定法の検討,三輪賢一郎,鵜木祐史,日本音響学会聴覚研究会資料, vol. 45, no. 8, H-2015-112, Nov. 2015.,甲州市勝沼 ぶどうの丘,2015/11/13
  • 64. Study on Source-filter Model Based Hybrid Speech Watermarking,Shengbei Wang, Nhut Minh Ngo, Masashi Unoki,IEICE Technical Report, EMM2015-69, pp. 49-54, Jan. 2016.,東北大学・電気通信研究所,2016/01/19
  • 65. 聴覚特性を利用した音響電子透かし「大事なデータを音に紛れ込ませることはできるか?」,鵜木祐史,電気関係学会北陸支部連合大会,金沢工業大学,2015/09/12
  • 66. 変調スペクトルの帯域を制限した雑音駆動音声の個人性知覚に関する研究,朱治,宮内良太,鵜木祐史,日本音響学会2015年度春季研究発表会講演論文, 2-Q-6, pp. 491-494,中央大学,2015/03/
  • 67. Study on Watermarking for Digital Audio Based on Adaptive Phase Modulation,Nhut Minh Ngo and Masashi Unoki,Proc. IEICE Technical Report, EMM2014-102, pp. 149-154,石垣島,2015/03
  • 68. Study on Audio Watermarking Scheme Based on Singlar-Spectrum Analysis,Jessada Karnjana, Masashi Unoki, Pakinee Aimmanee, and Chai Wutiwiwatchai,Proc. IEICE Technical Report, EMM2014-71, pp. 27-32,東北大学,2015/01
  • 69. INVESTIGATIONS INTO VOWEL AND CONSONANT STRUCTURES IN ARTICULATORY AND AUDITORY SPACES USING LAPLACIAN EIGENMAPS,Jianwu Dang, Shengbei Wang, Masashi Unoki,the 41st IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP 2016),Shanghai, China,2016/05
  • 70. 雑音残響環境における室内音響パラメータのブラインド推定法の検討,鵜木祐史,森田翔太,宮崎晃和,赤木正人,日本音響学会2015年度秋季研究発表会講演論文, 1-6-11, pp. 539-542,会津大学,2015/09/16
  • 71. Analysis of Watermarking into CELP Speech Codec Based on Formant Tuning,Erick Christian Garcia Alvarez, Shengbei Wang, and Masashi Unoki,IEICE Technical Report, EMM2015-37, pp. 39-44,名古屋大学,2015/09/11
  • 72. Study on restoration of instantaneous amplitude and phase of speech signal in noisy reverberant environments,Yang Liu,Naushin Nower,Yonghong Yan,Masashi Unoki,Proc. IEICE Technical Report, EA2015-11, pp. 7-12,東北大学,2015/08/03
  • 73. 雑音残響環境における音声伝送指標の推定と音声回復処理,鵜木祐史,森田翔太,宮崎昇和,赤木正人,日本音響学会聴覚研究会資料, Vol. 45, No. 5, H-2015-80, pp. 449-454,TOAジーベックホール,2015/07/22
  • 74. Formant Enhancement based Speech Watermarking for Tampering Detection,Shengbei Wang, Masashi Unoki, and Nam Soo Kim,15th Annual Conforence of International Speech Communication Association (Interspeech2014),Singapore,2014/09/14-18
  • 75. Robust Voice Activity Detection Based on Concept of Modulation Transfer Function in Noisy Reverberant Environments,Shota Morita, Masshi Unoki, Xugang Lu, and Masato Akagi,9th International Symposium on Chinese Spoken Language Processing (ISCSLP2014),Singapore,2014/09/13
  • 76. Signal to noise ratio estimation based on an optimal design of subband voice activity detection,Shota Morita, Xugang Lu, and Masashi Unoki,9th International Symposium on Chinese Spoken Language Processing (ISCSLP2014),Singapore,2014/09/13
  • 77. Speech Analysis Method Based on Source-Filter Model Using Multivariate Empirical Mode Decomposition in Log-Spectrum Domain,Surasak Boonkla, Masashi Unoki, Stanislav S. Makhanov, and Chai Wutiwiwatchai,9th International Symposium on Chinese Spoken Language Processing (ISCSLP2014),Singapore,2014/09/13
  • 78. Watermarking of Speech Signals Based on Formant Enhancement,Wang Shengbei and Masashi Unoki,22nd Europian Signal Processing Conference (EUSIPCO2014),Lisbon, Portugal,2014/09/03
  • 79. Hybrid Speech Watermarking based on Formant Enhancement and Cochlear Delay,Wang Shengbei and Masashi Unoki,10th International Conference on Intelligent Information Hiding and Multimedia Signal Processing (IIHMSP2014),Kitakyushu,2014/08/27
  • 80. COMPARATIVE EVALUATIONS OF INAUDIBLE AND ROBUST WATERMARKING FOR DIGITAL AUDIO SIGNALS,Masashi Unoki, Jessada Karnjana, Shengbei Wang, Nhut Minh Ngo, and Ryota Miyauchi,The 21st International Congress on Sound and Vibration (ICSV21), Beijing, July 2014.,Beijing, China,2014/07/16

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