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    • 1. 发明申请
    • Robust Voice Activity Detector System for Use with an Earphone
    • 坚固的语音活动检测系统,用于耳机
    • US20160118062A1
    • 2016-04-28
    • US14922475
    • 2015-10-26
    • Personics Holdings, LLC
    • John Usher
    • G10L25/84H04R1/10G10L21/0264H04R29/00G10L21/0224
    • G10L21/034G10L25/78H03G3/341H04R1/1083H04R29/006
    • An electronic device or method for adjusting a gain on a voice operated control system can include one or more processors and a memory having computer instructions. The instructions, when executed by the one or more processors causes the one or more processors to perform the operations of receiving a first microphone signal, receiving a second microphone signal, updating a slow time weighted ratio of the filtered first and second signals, and updating a fast time weighted ratio of the filtered first and second signals. The one or more processors can further perform the operations of calculating an absolute difference between the fast time weighted ratio and the slow time weighted ratio, comparing the absolute difference with a threshold, and increasing the gain when the absolute difference is greater than the threshold. Other embodiments are disclosed.
    • 用于调节语音操作控制系统上的增益的电子设备或方法可以包括一个或多个处理器和具有计算机指令的存储器。 所述指令在由所述一个或多个处理器执行时使得所述一个或多个处理器执行接收第一麦克风信号的操作,接收第二麦克风信号,更新经滤波的第一和第二信号的慢时间加权比,以及更新 滤波的第一和第二信号的快速时间加权比。 一个或多个处理器可以进一步执行计算快速时间加权比和慢时间加权比之间的绝对差的操作,将绝对差与阈值进行比较,以及当绝对差大于阈值时增加增益。 公开了其他实施例。
    • 2. 发明授权
    • Multiplexing audio system and method
    • 多路复用音频系统和方法
    • US09326067B2
    • 2016-04-26
    • US14259829
    • 2014-04-23
    • Personics Holdings, LLC
    • John UsherSteven W. Goldstein
    • H04R5/033H04R3/04H04S5/02H04S3/00G10L19/008H04R1/10H04R3/00
    • H04R3/04G10L19/008H04R1/1016H04R1/1041H04R3/005
    • A method and system for multiplexing audio signals into a single channel uses frequency division multiplexing. The frequency division multiplexing method herein is based on a frequency transform algorithm using FFT shifting that does not require a carrier signal for the modulation. In one embodiment, two input microphone audio signals are frequency shifted and the resulting single audio channel is directed over a standard input connection to a computing device, for instance, a smart phone using a wired TRRS connection. The TRRS analog input of the computing devices exhibits a high-pass characteristic, and the frequency shifting method enables the low frequency audio components of input audio signals to be received and processed by a software application on the smart phone. Other embodiments are disclosed.
    • 将音频信号复用为单个信道的方法和系统使用频分复用。 这里的频分复用方法是基于使用不需要用于调制的载波信号的FFT移位的频率变换算法。 在一个实施例中,两个输入麦克风音频信号被频移,并且所得到的单个音频信道被引导到诸如使用有线TRRS连接的智能电话的计算设备的标准输入连接。 计算装置的TRRS模拟输入具有高通特性,并且频移方法使得输入音频信号的低频音频分量能够由智能电话上的软件应用接收和处理。 公开了其他实施例。
    • 3. 发明申请
    • AUTOMATIC SOUND PASS-THROUGH METHOD AND SYSTEM FOR EARPHONES
    • 自动声音通过方法和系统的耳朵
    • US20150215701A1
    • 2015-07-30
    • US14600349
    • 2013-07-30
    • Personics Holdings, LLC
    • John Usher
    • H04R3/00
    • H04R3/002H04R1/1016H04R1/1041H04R3/005H04R2420/01H04R2420/07H04R2430/01
    • Earphone systems and methods for automatically directing ambient sound to an earphone device are provided. An ambient microphone signal from an ambient microphone proximate a sound isolating earphone or head-set device is directed to a receiver within an earphone device according to mixing circuitry. The mixing circuitry is controlled by voice activity of the earphone device wearer. This enables hands-free operation of an earphone system to allow the earphone device wearer to maintain situation awareness with the surrounding environment. During detected voice activity, incoming audio content is attenuated while ambient sound is increased and provided to the earphone device. User voice activity is detected by analysis of at least one of an ear canal microphone signal or an ambient sound microphone signal.
    • 提供了用于将环境声音自动引导到耳机装置的耳机系统和方法。 靠近隔音耳机或头戴式设备的来自环境麦克风的环境麦克风信号根据混合电路被引导到耳机设备内的接收器。 混合电路由耳机装置佩戴者的声音活动控制。 这使得耳机系统的免提操作允许耳机设备佩戴者保持与周围环境的状况意识。 在检测到的语音活动期间,输入的音频内容被衰减,同时增加环境声音并提供给耳机设备。 通过分析耳道麦克风信号或环境声音麦克风​​信号中的至少一个来检测用户语音活动。
    • 4. 发明申请
    • DESIGNER CONTROL DEVICES
    • 设计者控制装置
    • US20140327527A1
    • 2014-11-06
    • US14335902
    • 2014-07-19
    • PERSONICS HOLDINGS, LLC
    • Steven Wayne GoldsteinJohn Usher
    • G08C17/02G06F3/041
    • G08C17/02A61B5/0022A61B5/0205A61B5/6817G06F3/041
    • A control device configurable to couple to one or more devices having different control functions and a method of facilitating remote control of at least one device having different control functions includes a processor that receives an instruction for at least one of the control functions and additional information from the at least one device, the processor including a plurality of processing algorithms, the additional information received from the at least one device including at least a locally transmitted data signal. The processor selectably processes the additional information using at least one of the processing algorithms and controls a touch sensitive display reconfigurable for the different control functions, such that the at least one control function and the selectably processed additional information are presented on the touch sensitive display. The processor also generates at least one control signal responsive to receiving the locally transmitted data signal. Other embodiments are disclosed.
    • 可配置为耦合到具有不同控制功能的一个或多个设备的控制设备以及促进具有不同控制功能的至少一个设备的远程控制的方法包括:处理器,其从至少一个控制功能和附加信息接收指令, 所述至少一个设备,所述处理器包括多个处理算法,从所述至少一个设备接收的至少包括本地发送的数据信号的附加信息。 处理器可选择地使用至少一个处理算法处理附加信息,并且控制可针对不同控制功能重新配置的触敏显示器,使得至少一个控制功能和可选择处理的附加信息被呈现在触敏显示器上。 响应于接收到本地发送的数据信号,处理器还产生至少一个控制信号。 公开了其他实施例。
    • 8. 发明申请
    • ALWAYS ON HEADWEAR RECORDING SYSTEM
    • 始终保持在HEADWEAR RECORDING SYSTEM
    • US20150370527A1
    • 2015-12-24
    • US14840552
    • 2015-08-31
    • Personics Holdings, LLC
    • Steven Wayne GoldsteinJohn Usher
    • G06F3/16H04R29/00
    • G06F3/16H04R1/1091H04R3/04H04R29/00H04R2420/07H04R2460/15
    • An analysis system has an audio signal data communication system for receiving contents of a buffer where the buffer is configured to buffer at least one microphone signal responsive to an acoustic field proximate to a monitoring assembly at a remote location from the analysis system and a server having a data processing system configured to receive at least a portion of the contents of the buffer and configured to analyze at least the portion of the contents of the buffer. The data processing system includes an audio analysis system configured to analyze the at least the portion of the content of the buffer to process a sound into a response or action. Other embodiments are disclosed.
    • 分析系统具有音频信号数据通信系统,用于接收缓冲器的内容,其中缓冲器配置成缓冲至少一个麦克风信号,该麦克风信号响应于远离分析系统的远程位置处的监视组件附近的声场,以及具有 数据处理系统,被配置为接收所述缓冲器的所述内容的至少一部分并且被配置为分析所述缓冲器的所述内容的至少一部分。 数据处理系统包括被配置为分析缓冲器的内容的至少一部分以将声音处理成响应或动作的音频分析系统。 公开了其他实施例。
    • 9. 发明申请
    • METHOD AND DEVICE FOR VOICE OPERATED CONTROL
    • 用于语音操作控制的方法和设备
    • US20150334484A1
    • 2015-11-19
    • US14800556
    • 2015-07-15
    • Personics Holdings, LLC
    • John UsherSteve GoldsteinMarc Boillot
    • H04R1/08G10L25/78
    • H04R1/08G10L15/20G10L19/00G10L25/78H04R1/1041H04R3/005H04R25/50
    • At least one exemplary embodiment is directed to an acoustic device including an ear canal microphone configured to detect a first acoustic signal, an ambient microphone configured to detect a second acoustic signal, and a processor operatively coupled to the ear canal microphone and the ambient microphone. The processor is configured to detect a predetermined speech pattern based on an analysis of the first acoustic signal and the second acoustic signal and upon detection of the predetermined speech pattern, subsequently process acoustic signals from the ear canal microphone for a predetermined time or until the ear canal microphone detects a lack of an acoustic signal for a second predetermined time. After the predetermined time or after a second predetermined time, the processor processes acoustic signals from the ear canal microphone and the ambient microphone.
    • 至少一个示例性实施例涉及包括被配置为检测第一声信号的耳道麦克风的声学装置,被配置为检测第二声信号的环境麦克风,以及可操作地耦合到耳道麦克风和环境麦克风的处理器。 处理器被配置为基于对第一声信号和第二声信号的分析来检测预定语音模式,并且在检测到预定语音模式之后,随后处理来自耳道麦克风的声信号达预定时间或直到耳朵 运河麦克风检测到在第二预定时间内没有声信号。 在预定时间之后或在第二预定时间之后,处理器处理来自耳道麦克风和环境麦克风的声学信号。
    • 10. 发明申请
    • MULTIPLEXING AUDIO SYSTEM AND METHOD
    • 多重音频系统和方法
    • US20140314238A1
    • 2014-10-23
    • US14259829
    • 2014-04-23
    • PERSONICS HOLDINGS, LLC.
    • John UsherSteven W. Goldstein
    • H04S7/00
    • H04R3/04G10L19/008H04R1/1016H04R1/1041H04R3/005
    • A method and system for multiplexing audio signals into a single channel uses frequency division multiplexing. The frequency division multiplexing method herein is based on a frequency transform algorithm using FFT shifting that does not require a carrier signal for the modulation. In one embodiment, two input microphone audio signals are frequency shifted and the resulting single audio channel is directed over a standard input connection to a computing device, for instance, a smart phone using a wired TRRS connection. The TRRS analog input of the computing devices exhibits a high-pass characteristic, and the frequency shifting method enables the low frequency audio components of input audio signals to be received and processed by a software application on the smart phone. Other embodiments are disclosed.
    • 将音频信号复用为单个信道的方法和系统使用频分复用。 这里的频分复用方法是基于使用不需要用于调制的载波信号的FFT移位的频率变换算法。 在一个实施例中,两个输入麦克风音频信号被频移,并且所得到的单个音频信道被引导到诸如使用有线TRRS连接的智能电话的计算设备的标准输入连接。 计算装置的TRRS模拟输入具有高通特性,并且频移方法使得输入音频信号的低频音频分量能够由智能电话上的软件应用接收和处理。 公开了其他实施例。