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    • 44. 发明申请
    • Underwater Communication Device
    • 水下通信设备
    • US20130288596A1
    • 2013-10-31
    • US13636833
    • 2012-01-19
    • Takashi SuzukiShinsuke Taira
    • Takashi SuzukiShinsuke Taira
    • H04B13/02H04R1/14
    • H04B13/02B63C11/26H04B11/00H04R1/105H04R1/14H04R1/44H04R2201/107
    • An underwater communication device (100) is provided with a voice interface (4), a transceiving unit, a voice quality converting unit and a body (1), etcetera. A bone conduction/throat microphone unit, assembled in the voice interface (4), converts the vocal cord vibrations of a diver to voice signals. The voice quality converting unit converts the voice signals to voice signals based on a clearer voice. A transmitting unit, assembled in the transceiving unit, transmits the converted voice signals to the outside. A receiving unit, assembled in the transceiving unit, receives voice data which is transmitted from the outside. A bone-conduction speaker unit, assembled in the voice interface (4), outputs vibrations corresponding to the voice data received by the receiving unit. Attachment equipment (1, 2, 3) are put on a diver in a state where the bone-conduction speaker unit is in attached to the diver. The receiving unit and the bone-conduction speaker unit are integrally attached to the body (1).
    • 水下通信装置(100)具有语音接口(4),收发单元,语音质量转换单元和主体(1)等。 组装在声音接口(4)中的骨传导/喉音麦克风单元将潜水员的声带振动转换成语音信号。 语音质量转换单元基于更清晰的语音将语音信号转换成语音信号。 组装在收发单元中的发送单元将转换的语音信号发送到外部。 组装在收发单元中的接收单元接收从外部发送的语音数据。 组装在语音接口(4)中的骨传导扬声器单元输出与由接收单元接收的语音数据相对应的振动。 在导体扬声器单元附接到潜水员的状态下,将附属设备(1,2,3)放在潜水员身上。 接收单元和骨传导扬声器单元一体地附接到主体(1)。
    • 46. 发明授权
    • Apparatus and method for producing an audible speech signal from a non-audible speech signal
    • 用于从非听觉语音信号产生可听语音信号的设备和方法
    • US08155966B2
    • 2012-04-10
    • US12375491
    • 2007-02-07
    • Tomoki TodaMikihiro NakagiriHideki KashiokaKiyohiro Shikano
    • Tomoki TodaMikihiro NakagiriHideki KashiokaKiyohiro Shikano
    • G10L13/02G10L13/00
    • H04R1/14G10L21/0364G10L2021/0575H04R3/005H04R2499/11
    • [Problems]To convert a signal of non-audible murmur obtained through an in-vivo conduction microphone into a signal of a speech that is recognizable for (hardly misrecognized by) a receiving person with maximum accuracy.[Means for Solving Problems]A speech processing method comprising: a learning step (S7) for conducting a learning calculation of a model parameter of a vocal tract feature value conversion model indicating conversion characteristic of acoustic feature value of vocal tract, on the basis of a learning input signal of non-audible murmur recorded by an in-vivo conduction microphone and a learning output signal of audible whisper corresponding to the learning input signal recorded by a prescribed microphone, and then, storing a learned model parameter in a prescribed storing means; and a speech conversion step (S9) for converting a non-audible speech signal obtained through an in-vivo conduction microphone into a signal of audible whisper, based on a vocal tract feature value conversion model, with a learned model parameter obtained through the learning step set thereto.
    • [问题]将通过体内传导麦克风获得的不可听到的杂音的信号转换为以最高精度识别(难以被错误识别)接收者的语音信号。 解决问题的手段一种语音处理方法,包括:学习步骤(S7),用于基于指示声带的声学特征值的转换特性来进行声道特征值转换模型的模型参数的学习计算 由体内传导麦克风记录的非听觉杂音的学习输入信号和与规定的麦克风记录的学习输入信号相对应的可听耳语的学习输出信号,然后将学习的模型参数存储在规定的存储装置 ; 以及语音转换步骤(S9),用于基于声道特征值转换模型将通过体内传导麦克风获得的非可听语音信号转换为可听到的耳语的信号,通过学习获得的学习模型参数 步骤。
    • 47. 发明申请
    • VIBRATION PICKUP MICROPHONE
    • 振动扒手麦克风
    • US20100290660A1
    • 2010-11-18
    • US12863454
    • 2009-02-06
    • Mikio Fukuda
    • Mikio Fukuda
    • H04R1/02
    • H04R7/122H04R1/14H04R1/46
    • To provide a microphone used for telecommunication or speech recognition input in a high noise environment, or more specifically, a vibration pickup microphone that hardly howls even when transmission and reception occur simultaneously. A vibration pickup microphone has: a housing 1 attached to a human body contact surface of a transmitter/receiver or the like; a microphone unit 2 of an aerial vibration collecting type incorporated in the housing 1; and a microphone holder 5 that is made of an elastic material and supports the microphone unit 2 in the housing 1. The housing 1 has a case 3 having an opening in an upper surface thereof, in which the microphone holder 5 is fitted, and a cover 4 that is made of an elastic material and covers an outer surface of the case 3. A multilayered diaphragm 6 is disposed on an upper surface of the microphone holder 5 with an air space 16 formed between the multilayered diaphragm 6 and the microphone holder 5. A sealed cavity 7 is formed between diaphragms 6a and 6b constituting the multilayered diaphragm 6.
    • 为了提供在高噪声环境中用于电信或语音识别输入的麦克风,或者更具体地,即使在同时发生发送和接收时几乎不发声的振动拾取麦克风。 振动拾音麦克风具有:附接到发射器/接收器等的人体接触表面的壳体1; 配置在壳体1中的天线振动收集式的麦克风单元2; 以及由弹性材料制成并将麦克风单元2支撑在壳体1中的麦克风保持器5.壳体1具有壳体3,壳体3的上表面具有开口,麦克风保持架5安装在该壳体3中, 盖4由弹性材料制成并覆盖壳体3的外表面。多层隔膜6设置在麦克风保持器5的上表面上,其中空间16形成在多层隔膜6和麦克风保持件5之间 在构成多层隔膜6的隔膜6a和6b之间形成密封腔7。
    • 48. 发明申请
    • SPEECH PROCESSING METHOD, SPEECH PROCESSING PROGRAM, AND SPEECH PROCESSING DEVICE
    • 语音处理方法,语音处理程序和语音处理装置
    • US20090326952A1
    • 2009-12-31
    • US12375491
    • 2007-02-07
    • Tomoki TodaMikihiro NakagiriHideki KashiokaKiyohiro Shikano
    • Tomoki TodaMikihiro NakagiriHideki KashiokaKiyohiro Shikano
    • G10L21/00H04R1/14H04R1/00G10L15/06
    • H04R1/14G10L21/0364G10L2021/0575H04R3/005H04R2499/11
    • [Problems] To convert a signal of non-audible murmur obtained through an in-vivo conduction microphone into a signal of a speech that is recognizable for (hardly misrecognized by) a receiving person with maximum accuracy.[Means for Solving Problems] A speech processing method comprising: a learning step (S7) for conducting a learning calculation of a model parameter of a vocal tract feature value conversion model indicating conversion characteristic of acoustic feature value of vocal tract, on the basis of a learning input signal of non-audible murmur recorded by an in-vivo conduction microphone and a learning output signal of audible whisper corresponding to the learning input signal recorded by a prescribed microphone, and then, storing a learned model parameter in a prescribed storing means; and a speech conversion step (S9) for converting a non-audible speech signal obtained through an in-vivo conduction microphone into a signal of audible whisper, based on a vocal tract feature value conversion model, with a learned model parameter obtained through the learning step set thereto.
    • [问题]将通过体内传导麦克风获得的不可听到的杂音的信号转换为以最高精度识别(难以被错误识别)接收者的语音信号。 解决问题的手段一种语音处理方法,包括:学习步骤(S7),用于基于指示声带的声学特征值的转换特性来进行声道特征值转换模型的模型参数的学习计算 由体内传导麦克风记录的非听觉杂音的学习输入信号和与规定的麦克风记录的学习输入信号相对应的可听耳语的学习输出信号,然后将学习的模型参数存储在规定的存储装置 ; 以及语音转换步骤(S9),用于基于声道特征值转换模型将通过体内传导麦克风获得的非可听语音信号转换为可听到的耳语的信号,通过学习获得的学习模型参数 步骤。