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    • 3. 发明授权
    • Multifunctional wearable audio-sensing electronic device
    • 多功能可穿戴式音响电子设备
    • US09500515B2
    • 2016-11-22
    • US14518314
    • 2014-10-20
    • Mass Moment LLC
    • Andrew George Tejerina
    • H04R29/00G01H3/14H04R25/00H03G3/00
    • G01H3/14
    • A multifunctional wearable audio-sensing electronic device is disclosed in which audio is detected, detected audio is analyzed to determine characteristics of the audio, a warning is generated in response to determining that a decibel level of the detected audio is physically harmful, when the wearable audio-sensing electronic device is in a musical tuner mode, a deviation of the audio from a pre-determined audio characteristics of a musical instrument is displayed, when the wearable audio-sensing electronic device is in a hearing aid mode, an identification of the audio and a direction from which the audio originates is displayed, when the wearable audio-sensing electronic device is in an ambiance indicator mode, a visual representation of an audio ambience is displayed, and when the wearable audio-sensing electronic device is in an audio recorder mode, the audio is recorded to the memory and played back.
    • 公开了一种多功能可穿戴音频感测电子设备,其中检测音频,分析检测到的音频以确定音频的特性,响应于确定检测到的音频的分贝电平在物理上是有害的而产生警告,当可穿戴式 音频电子设备处于音乐调谐器模式时,显示音频与乐器的预定音频特性的偏差,当可穿戴式音频感应电子设备处于助听器模式时,识别 音频和音频起始的方向被显示,当可穿戴式音频电子设备处于气氛指示器模式时,显示音频环境的视觉表示,并且当可穿戴式音频电子设备处于音频 录音机模式,音频被记录到存储器并重播。
    • 4. 发明申请
    • SERVER PROVIDING A QUIETER OPEN SPACE WORK ENVIRONMENT
    • 提供开放空间工作环境的服务器
    • US20160323438A1
    • 2016-11-03
    • US15108591
    • 2014-11-28
    • ALCATEL LUCENT
    • Loic JEHANNORegis KERFOURNPierre CHAPTAL
    • H04M1/725G01H3/14H04L29/08
    • H04M1/72569G01H3/14G08B23/00H04L67/12
    • A server for providing a quieter environment in an open work space that has a plurality of work places used by a plurality of users comprises a processor configured to receive digital audio signals corresponding to ambient noises captured by microphones at the work places, compute average values that represent current noises at the work places, compute a threshold value that represents a current noise in a neighbourhood of a first work place as a function of p values that represent the current noises at p work places that are neighbors of the first work place, compare each digital audio signal with the threshold value, determine the digital audio signals that are greater than the threshold value to determine at least one work place that corresponds to a digital audio signal that is greater than the threshold value, and send a warning to a user of the determined at least one work place.
    • 用于在具有多个用户使用的多个工作场所的开放工作空间中提供更安静环境的服务器包括:处理器,被配置为接收对应于在工作场所由麦克风捕获的环境噪声的数字音频信号,计算平均值, 表示工作场所的当前噪声,计算表示第一工作地点附近的当前噪声的阈值作为表示作为第一工作场所的邻居的工作地点的当前噪声的p值的函数,比较 具有阈值的每个数字音频信号确定大于阈值的数字音频信号以确定对应于大于阈值的数字音频信号的至少一个工作场所,并向用户发送警告 确定的至少一个工作地点。
    • 6. 发明授权
    • Methods and apparatus for continuous noise exposure monitoring
    • 连续噪声暴露监测的方法和装置
    • US09381119B2
    • 2016-07-05
    • US12880967
    • 2010-09-13
    • Kevin Michael
    • Kevin Michael
    • A61F11/08G01H3/14
    • A61F11/08G01H3/14
    • A method for continuously monitoring noise exposure level of a person via measuring sound level within an ear canal of the person using a sound measurement means linked to a sound level recording device external to the ear canal, wherein the sound measurement means may be shielded from the environment by a hearing protective device, and wherein the cable does not interfere with the ability of the hearing protective device to reduce noise exposure level in the ear canal. Also provided is a system comprising a sound measurement means mounted within an ear canal of the person, an external sound level recording means and a linking cable. Further provided is a system for providing continuous noise exposure monitoring level of a person, and for providing radio communication in a noisy environment, said system comprising the above sound monitoring system linked to a radio signal transmission means, and is switchable between said sound level recording means in a recording mode and said radio signal transmission means in a communication mode.
    • 一种通过使用与耳道外部的声级记录装置连接的声音测量装置来测量人的耳道内的声音水平来连续监视人的噪声暴露水平的方法,其中,声音测量装置可以屏蔽 环境,并且其中电缆不干扰听力保护装置降低耳道中的噪声暴露水平的能力。 还提供了一种系统,包括安装在人的耳道内的声音测量装置,外部声级记录装置和连接电缆。 还提供了一种用于提供人的连续噪声暴露监测级别并用于在嘈杂环境中提供无线电通信的系统,所述系统包括与无线电信号传输装置链接的上述声音监测系统,并且可在所述声级记录 处于记录模式的装置和所述无线电信号传输装置处于通信模式。
    • 7. 发明授权
    • Method and system for an ultra low power dosimeter
    • 超低功率剂量计的方法和系统
    • US09222827B2
    • 2015-12-29
    • US12945468
    • 2010-11-12
    • Mead C. Killion
    • Mead C. Killion
    • G01H3/14
    • G01H3/14H03G3/32H04R3/00H04R29/001
    • Certain embodiments of the invention may be found in an ultra low power dosimeter assembly. The ultra low power dosimeter assembly may comprise a low power voltage source and a table circuit. The table circuit may be adapted to convert an input voltage to a second voltage level. The second voltage level may correspond to noise dose. The ultra low power dosimeter assembly may also comprise a switch adapted to trigger a control circuit. The control circuit may provide progressive attenuation of an output signal as the second voltage level increases. In certain embodiments, the control circuit may also be adapted to send one or more warning signals to a user of the ultra low power dosimeter. The one or more warning signals may be sent when the control circuit determines the second voltage level has reached one or more pre-determined threshold voltage levels.
    • 本发明的某些实施例可以在超低功率剂量计组件中找到。 超低功率剂量计组件可以包括低功率电压源和台式电路。 台式电路可以适于将输入电压转换为第二电压电平。 第二电压电平可以对应于噪声剂量。 超低功率剂量计组件还可以包括适于触发控制电路的开关。 当第二电压电平增加时,控制电路可以提供输出信号的渐进衰减。 在某些实施例中,控制电路还可以适于向超低功率剂量计的用户发送一个或多个警告信号。 当控制电路确定第二电压电平达到一个或多个预定阈值电压电平时,可以发送一个或多个警告信号。
    • 9. 发明申请
    • HEADSET WITH FIT DETECTION SYSTEM
    • 头盔与FIT检测系统
    • US20150010158A1
    • 2015-01-08
    • US14320926
    • 2014-07-01
    • Sonetics Holdings, Inc.
    • Simon BroadleyBrian VanderPloeg
    • H04R29/00H04R1/10H04R1/08
    • H04R29/00A61F11/14A61F2011/145G01H3/14G10K11/178G10K2210/1081H04R1/08H04R1/1083H04R5/033H04R5/04H04R2201/107
    • Headphones with acoustically resistant ear cups, an external noise sensor mounted thereto that monitors ambient noise, and internal sensors to monitor noise within each ear cup are disclosed. A processing system monitors the external and interior sound detected by the sensors and compares the level inside the ear cups with the detected level of ambient noise. It activates a transducer such as a vibrator, buzzer, or light as needed to indicate when the level within the ear cups has exceeded the predetermined criteria thereby indicating improper fit of the headphones. Alternative embodiments include wirelessly communicating the collected data to an auxiliary computer for remote data collection, storage and monitoring. The headphones may also provide a sound dosimeter; bandpass filtering; automatic noise reduction with feed forward and/or feed back; wireless voice and data communication; and a voice activated switch, all using elements of the headphone fit detection circuitry.
    • 公开了具有防声耳罩的耳机,安装在其上的外部噪声传感器,其监测环境噪声,以及用于监测每个耳罩内的噪声的内部传感器。 处理系统监测由传感器检测到的外部和内部声音,并将耳罩内的水平与检测到的环境噪声水平进行比较。 它根据需要激活诸如振动器,蜂鸣器或光的换能器,以指示耳罩内的水平何时超过预定标准,从而指示耳机的不适合。 替代实施例包括将所收集的数据无线地传送到辅助计算机以进行远程数据收集,存储和监视。 耳机还可以提供声音剂量计; 带通滤波器 自动降噪,前馈和/或反馈; 无线语音和数据通信; 和一个声音激活的开关,全部使用耳机适配检测电路的元件。