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Noise suppression for a wireless communication device 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04R-003/00
출원번호 US-0076201 (2002-02-12)
발명자 / 주소
  • Yang,Feng
  • Huang,Yen Son Paul
출원인 / 주소
  • ForteMedia, Inc.
대리인 / 주소
    Dinh & Associates
인용정보 피인용 횟수 : 134  인용 특허 : 9

초록

초록이 없습니다.

대표청구항

대표청구항이 없습니다.

이 특허에 인용된 특허 (9)

  1. Castello Da Costa Paulo M.,NLX ; Janse Cornelis P.,NLX ; Timmermans Patrick A. A.,NLX, Adaptive noise cancelling arrangement, a noise reduction system and a transceiver.
  2. Peter Handel SE; Jim Rasmusson SE, Methods and apparatus for measuring signal level and delay at multiple sensors.
  3. Kellermann Walter (Eckental DEX), Mobile radio set comprising a speech processing arrangement.
  4. Hosoi Yoshiaki,JPX, Noise Canceler.
  5. Janse Cornelis P. (Eindhoven NLX), Noise reduction system and device, and a mobile radio station.
  6. Bartlett Charles S. (Clinton MD) Zuniga Michael A. (Fairfax VA), Noise-canceling differential microphone assembly.
  7. David V. Anderson ; Stephen McGrath ; Kwan Truong, Speech activity detector for use in noise reduction system, and methods therefor.
  8. Marash, Joseph; Berdugo, Baruch, Super directional beamforming design and implementation.
  9. Oh Sang G. (Richardson TX) Viswanathan Vishu R. (Dallas TX), System and method for improved speech acquisition for hands-free voice telecommunication in a noisy environment.

이 특허를 인용한 특허 (134)

  1. Nongpiur, Rajeev; Hetherington, Phillip A., Adaptive filter pitch extraction.
  2. Every, Mark; Solbach, Ludger; Murgia, Carlo; Jiang, Ye, Adaptive noise cancelation.
  3. Every, Mark; Solbach, Ludger; Murgia, Carlo; Jiang, Ye, Adaptive noise cancellation.
  4. Choi, Sangnam; Seguin, Chad, Adaptive signal equalization.
  5. Nongpiur, Rajeev; Heterington, Phillip A., Advanced periodic signal enhancement.
  6. Kennewick, Robert A.; Locke, David; Kennewick, Sr., Michael R.; Kennewick, Jr., Michael R.; Kennewick, Richard; Freeman, Tom, Agent architecture for determining meanings of natural language utterances.
  7. Marks, Richard L.; Mao, Xiadong, Apparatus for image and sound capture in a game environment.
  8. Mao, Xiadong, Audio input system.
  9. Kwan, Chiman; Zhou, Jin, Compact plug-in noise cancellation device.
  10. Choi, Byung Il; Lee, Byounghee, Digital filter spectrum sensor.
  11. Konchitsky, Alon; Berstein, Alberto D; Kathirvelu, Hariharan Ganapathy; Kulakcherla, Sandeep; Ribble, William Martin, Dual adaptive structure for speech enhancement.
  12. Takahashi, Toshio; Saito, Kazuyuki; Yamaguchi, Makoto; Sakamoto, Kei, Electronic apparatus capable of always executing proper noise canceling regardless of display screen state, and voice input method for the apparatus.
  13. Zurek, Robert; Bastyr, Kevin; Clark, Joel; Ivanov, Plamen, Electronic apparatus for generating beamformed audio signals with steerable nulls.
  14. Liao, Ming-Yang, Electronic device capable of auto-tracking sound source.
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  16. Florencio, Dinei; Zhang, Cha; Ba, Demba, Enhanced beamforming for arrays of directional microphones.
  17. Krini, Mohamed; Schalk-Schupp, Ingo; Buck, Markus, Formant dependent speech signal enhancement.
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  22. Burnett, Gregory C., Light-based detection for acoustic applications.
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  48. Elko, Gary W.; Meyer, Jens M.; Gaensler, Tomas Fritz, Noise-reducing directional microphone array.
  49. Haulick, Tim; Schmidt, Gerhard Uwe, Noisy environment communication enhancement system.
  50. Haulick, Tim; Schmidt, Gerhard Uwe, Noisy environment communication enhancement system.
  51. Giesbrecht, David; Hetherington, Phillip, Periodic signal enhancement system.
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  53. Nongpiur, Rajeev; Giesbrecht, David; Hetherington, Phillip, Periodic signal enhancement system.
  54. Kisel, Michael, Processing system having a partitioning component for resource partitioning.
  55. Kisel, Michael, Processing system having memory partitioning.
  56. Kisel, Michael, Processing system having memory partitioning.
  57. Järvinen, Kari, Quality enhancement in multimedia capturing.
  58. Taylor, Norrie, Remote control server protocol system.
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  61. Solbach, Ludger, Self calibration of audio device.
  62. Tashev, Ivan; Acero, Alejandro, Sensor array beamformer post-processor.
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  69. Nongpiur, Rajeev; Hetherington, Phillip A., Sub-band periodic signal enhancement system.
  70. Avendano, Carlos; Solbach, Ludger, System and method for 2-channel and 3-channel acoustic echo cancellation.
  71. Baldwin, Larry; Freeman, Tom; Tjalve, Michael; Ebersold, Blane; Weider, Chris, System and method for a cooperative conversational voice user interface.
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  74. Klein, David, System and method for adaptive intelligent noise suppression.
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  76. Murgia, Carlo; Afshar, Alex; Klein, David, System and method for adaptive power control.
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  82. Solbach, Ludger, System and method for controlling adaptivity of signal modification using a phantom coefficient.
  83. Freeman, Tom; Kennewick, Mike, System and method for delivering targeted advertisements and tracking advertisement interactions in voice recognition contexts.
  84. Freeman, Tom; Kennwick, Mike, System and method for delivering targeted advertisements and tracking advertisement interactions in voice recognition contexts.
  85. Freeman, Tom; Kennewick, Mike, System and method for delivering targeted advertisements and/or providing natural language processing based on advertisements.
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  90. Every, Mark; Klein, David, System and method for enhancing a monaural audio signal.
  91. Klein, David, System and method for envelope-based acoustic echo cancellation.
  92. Kennewick, Robert A.; Locke, David; Kennewick, Sr., Michael R.; Kennewick, Jr., Michael R.; Kennewick, Richard; Freeman, Tom, System and method for filtering and eliminating noise from natural language utterances to improve speech recognition and parsing.
  93. Kennewick, Robert A.; Armstrong, Lynn Elise, System and method for hybrid processing in a natural language voice services environment.
  94. Solbach, Ludger; Watts, Lloyd, System and method for processing an audio signal.
  95. Baldwin, Larry; Weider, Chris, System and method for processing multi-modal device interactions in a natural language voice services environment.
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