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    • 2. 发明授权
    • Automated fitting of hearing devices
    • 自动安装听力设备
    • US09253583B2
    • 2016-02-02
    • US13201033
    • 2010-02-16
    • Peter John BlameyHenry Carter SmithDavid Wright
    • Peter John BlameyHenry Carter SmithDavid Wright
    • H04R25/00
    • H04R25/70H04R25/305H04R25/505
    • Fitting a sound processing device for an individual is automated using a computer. Fitting and customization is carried out using natural sounds without specialized audiometric equipment or audiological expertise. Software for this purpose is downloaded from an internet portal. The computer plays back acoustic signals, and obtains user input reflecting the user's perceptions of the acoustic signals, from which a hearing map is derived, representing the user's hearing. An algorithm updates the device fitting based on the hearing map. Also provided is pre-sale virtual device fitting, whereby a virtual signal processing path is established in the computer, reflecting a signal processing function of a sound processing device of interest to the user. An algorithm updates parameters of the virtual processing path, based on the hearing map. Audio signals passed through the virtual processing path are played back to the user, giving the user an acoustic indication of future device performance.
    • 使用计算机自动安装个人的声音处理设备。 使用自然声音进行装配和定制,没有专门的听力设备或听觉专家。 为此目的的软件从互联网门户下载。 计算机回放声信号,并且获得反映用户对声信号的感知的用户输入,从中导出听觉地图,表示用户的听觉。 算法根据听力图更新设备配件。 还提供了预售虚拟设备拟合,由此在计算机中建立虚拟信号处理路径,反映用户感兴趣的声音处理设备的信号处理功能。 基于听力图,算法更新虚拟处理路径的参数。 通过虚拟处理路径的音频信号被回放给用户,给予用户对未来设备性能的声学指示。
    • 4. 发明授权
    • System and method for binaural noise reduction in a sound processing device
    • US09820071B2
    • 2017-11-14
    • US13061024
    • 2009-08-27
    • Peter Blamey
    • Peter Blamey
    • H04R25/00H04S1/00H04R5/04
    • H04S1/002H04R5/04H04R25/407H04R25/552
    • In one embodiment, the present invention provides a sound processing device with a binaural input and binaural output, where “binaural input” means at least one microphone mounted in or near each ear of the device user, and “binaural output” means at least one output signal directed to each ear. The device may be comprised of two parts connected by a wired or wireless link. The device comprises: at least one microphone in or near each ear for the transduction of the sound at each ear; a signal-to-noise estimation module to estimate the signal-to-noise ratio present at each ear; a comparison and selection module to compare the signal-to-noise ratios present at the two ears and select the ear with the greater signal-to-noise ratio; a noise reduction control module that uses the spectral and temporal information from the selected ear signal to control two identical noise reduction modules; two identical noise reduction modules that process the signals from the two ears, under the control of the control module; and two output modules that amplify the output signals from the noise reduction modules appropriately for each ear and present the amplified signals as sound or other signals to each ear of the device user. The device may be implemented in dedicated hardware embodiment or by software running on a microprocessor.