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    • 22. 发明授权
    • Method and apparatus for in-ear canal sound suppression
    • 耳道声音抑制方法和装置
    • US09191740B2
    • 2015-11-17
    • US12245316
    • 2008-10-03
    • Jason McIntoshMarc BoillotJohn UsherSteven Goldstein
    • Jason McIntoshMarc BoillotJohn UsherSteven Goldstein
    • A61F11/06H04R3/00H04R3/02H04M9/08
    • H04M3/568H04M9/08H04R1/1016H04R3/005H04R3/02H04R2460/01H04R2460/05
    • An earpiece (100) and acoustic management module for in-ear canal suppression control are provided. A method for suppressing signals for a conference call, a vehicle, and a general communication event is also provided. The earpiece can include an Ambient Sound Microphone (111) to capture ambient sound, an Ear Canal Receiver (125) to deliver audio content to an ear canal, an Ear Canal Microphone (123) configured to capture internal sound, and a processor (121). The processor can generate a voice activity level (622) and suppress an echo, spoken voice, and media content in the electronic internal signal, and mix an electronic ambient signal with an electronic internal signal in a ratio dependent on the voice activity level and a background noise level to produce a mixed signal (323) that is delivered to the ear canal (131).
    • 提供耳塞(100)和用于耳道内抑制控制的声学管理模块。 还提供了一种用于抑制电话会议,车辆和一般通信事件的信号的方法。 听筒可以包括用于捕获环境声音的环境声音麦克风​​(111),用于向耳道传送音频内容的耳道接收器(125),被配置为捕获内部声音的耳道麦克风(123)和处理器(121 )。 处理器可以产生语音活动级别(622)并且抑制电子内部信号中的回声,口语和媒体内容,并且以电子内部信号的方式将电子环境信号与取决于语音活动级别和 背景噪声水平以产生被传送到耳道(131)的混合信号(323)。
    • 23. 发明申请
    • Method and Device for Voice Operated Control
    • 语音控制方法和设备
    • US20140095157A1
    • 2014-04-03
    • US14095113
    • 2013-12-03
    • John UsherSteve GoldsteinMarc Boillot
    • John UsherSteve GoldsteinMarc Boillot
    • G10L15/20
    • H04R1/08G10L15/20G10L19/00G10L25/78H04R1/1041H04R3/005H04R25/50
    • At least one exemplary embodiment is directed to a method and device for voice operated control with learning. The method can include measuring a first sound received from a first microphone, measuring a second sound received from a second microphone, detecting a spoken voice based on an analysis of measurements taken at the first and second microphone, learning from the analysis when the user is speaking and a speaking level in noisy environments, training a decision unit from the learning to be robust to a detection of the spoken voice in the noisy environments, mixing the first sound and the second sound to produce a mixed signal, and controlling the production of the mixed signal based on the learning of one or more aspects of the spoken voice and ambient sounds in the noisy environments.
    • 至少一个示例性实施例涉及用于通过学习进行语音操作控制的方法和装置。 该方法可以包括测量从第一麦克风接收的第一声音,测量从第二麦克风接收的第二声音,基于在第一和第二麦克风处获取的测量结果的分析来检测口语声音,当用户为 在嘈杂的环境中讲话和讲话水平,从学习中培养决策单位,以在嘈杂的环境中检测到语音,将混合的第一声和第二声音混合起来,并产生混合信号 基于在嘈杂环境中学习口语和环境声音的一个或多个方面的混合信号。
    • 25. 发明授权
    • Ear input sound pressure level monitoring system
    • 耳输入声压级监控系统
    • US08311228B2
    • 2012-11-13
    • US11757152
    • 2007-06-01
    • Steven W. GoldsteinJohn UsherBrian Fligor
    • Steven W. GoldsteinJohn UsherBrian Fligor
    • H04R29/00G01H3/10G01H3/14A61F11/06
    • A61B5/121A61B5/128G01H3/14H04R1/1016H04R29/00
    • Systems and methods for monitoring a sound pressure level dose at an ear are provided. A system includes an audio transducer which outputs a sound signal is placed within an ear to receive sound at the ear. A sound level threshold detector determines whether a sound pressure level of the sound signal is at a minimum level and outputs a sound pressure level signal corresponding to the sound pressure level when the sound pressure level is not at the minimum level. A time period is calculated during which the sound pressure level is not at the minimum threshold level. A listening fatigue calculator determines whether a cumulative effect of exposure to the sound signal at the ear over the time period will cause harm to the ear. At least a portion of the system is disposed in situ at the ear.
    • 提供了用于监测耳朵上的声压级剂量的系统和方法。 系统包括音频换能器,其输出声音信号放置在耳朵内以在耳朵处接收声音。 声级阈值检测器确定声音信号的声压级是否处于最低水平,并且当声压级不在最低水平时输出与声压级相对应的声压级信号。 计算声压级不在最小阈值水平的时间段。 听力疲劳计算器确定在该时间段内耳朵的声音信号的累积效应是否会对耳朵造成伤害。 该系统的至少一部分被置于耳朵的原位。
    • 30. 发明授权
    • Adaptive audio content generation system
    • 自适应音频内容生成系统
    • US08018328B2
    • 2011-09-13
    • US12208923
    • 2008-09-11
    • Steven GoldsteinJohn Usher
    • Steven GoldsteinJohn Usher
    • G08B3/00B60Q1/22H03G3/20
    • B60Q5/00
    • Methods and systems are provided which generate an alarm signal that alerts individuals who may be in the vicinity of a reversing vehicle and that alerts a vehicle operator when the alarm signal is not audible due to high ambient sound levels or detritus covering the alarm transducer. A background noise level in proximity to the vehicle is monitored. A level of the alarm signal is increased as the ambient (or background) sound level rises. Conversely, the level of the alarm signal is reduced as the background noise level decreases. The alarm signal is changed in volume, frequency, or both based on a velocity of the vehicle. A frequency content of the alarm signal may be modified if a spectral profile of an ambient sound field contains spectral components that may mask the alarm signal.
    • 提供了产生警报信号的方法和系统,该警报信号警告可能在反向车辆附近的个人,并且当警报信号由于高的环境声级或覆盖报警换能器的碎屑而不能听到时警告车辆操作者。 监测车辆附近的背景噪音水平。 当环境(或背景)声级上升时,报警信号的电平增加。 相反,随着背景噪声水平的降低,报警信号的电平也会降低。 基于车辆的速度,报警信号以体积,频率或两者改变。 如果环境声场的频谱分布包含可能屏蔽报警信号的频谱分量,则可以修改报警信号的频率内容。