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    • 12. 发明申请
    • TARGET VOICE EXTRACTION METHOD, APPARATUS AND PROGRAM PRODUCT
    • 目标语音提取方法,装置和程序产品
    • US20110131044A1
    • 2011-06-02
    • US12955882
    • 2010-11-29
    • Takashi FukudaOsamu IchikawaMasafumi Nishimura
    • Takashi FukudaOsamu IchikawaMasafumi Nishimura
    • G10L17/00
    • G10L25/78G10L15/20G10L21/028G10L2021/02166
    • An apparatus, program product and method is provided for separating a target voice from a plurality of other voices having different directions of arrival. The method comprises the steps of disposing a first and a second voice input device at a predetermined distance from one another and upon receipt of voice signals at said devices calculating discrete Fourier transforms for the signals and calculating a CSP (cross-power spectrum phase) coefficient by superpositioning multiple frequency-bin components based on correlation of the two spectra signals received and then calculating a weighted CSP coefficient from said two discrete Fourier-transformed speech signals. A target voice is separated when received by said devices from other voice signals in a spectrum by using the calculated weighted CSP coefficient.
    • 提供了一种用于将目标语音与具有不同到达方向的多个其他语音分离的装置,程序产品和方法。 该方法包括以下步骤:将第一和第二语音输入设备彼此隔开预定的距离,并且在所述设备接收到语音信号时,为信号计算离散付里叶变换并计算CSP(交叉功率谱相位)系数 通过基于所接收的两个频谱信号的相关性叠加多个频率分量,然后从所述两个离散傅里叶变换的语音信号计算加权的CSP系数。 通过使用计算的加权CSP系数,通过所述设备从频谱中的其他语音信号接收目标语音。
    • 13. 发明申请
    • CONNECTION ADAPTER AND CHEMICAL LIQUID CONNECTING APPARATUS
    • 连接适配器和化学液体连接装置
    • US20100015011A1
    • 2010-01-21
    • US12094595
    • 2006-11-24
    • Toru NemotoTomoyuki IkomaTakashi Fukuda
    • Toru NemotoTomoyuki IkomaTakashi Fukuda
    • B01L3/00
    • A61M39/10A61M5/007A61M39/20A61M2039/1077A61M2039/1083A61M2039/1088
    • A connection adapter comprises a hollow supply needle communicating with a liquid supply tube connection portion, a hollow discharge needle communicating with a chemical liquid injection tube connection portion, a holder portion supporting the supply needle and the discharge needle, and a protection cap removably fit on the polder portion, the supply needle and the discharge needle being accommodated by and hermetically sealed in the protection cap and the holder portion. By using the adapter, a liquid is supplied from the liquid supply tube to remove air in the liquid supply tube and the chemical liquid injection tube, and then the protection cap is removed, and then the needles are inserted into a chemical liquid container having an opening sealed with an elastic member, and a push-out liquid is supplied from the liquid supply needle into the chemical liquid container, whereby the chemical liquid is injected through the discharge needle and the chemical liquid injection tube into a patient.
    • 连接适配器包括与液体供应管连接部连通的中空供应针,与药液注入管连接部连通的中空排出针,支撑供给针和排出针的保持部,以及可拆卸地配合在其上的保护帽 所述烙铁部分,所述供应针和所述排出针被所述保护盖和所述保持部分容纳并密封。 通过使用适配器,从液体供给管供给液体以除去液体供给管和药液注入管中的空气,然后除去保护帽,然后将针插入具有 开口用弹性部件密封,从液体供给针向药液容器供给推出液,通过排出针和药液注入管将药液注入患者体内。
    • 15. 发明申请
    • METHOD, PREPROCESSOR, SPEECH RECOGNITION SYSTEM, AND PROGRAM PRODUCT FOR EXTRACTING TARGET SPEECH BY REMOVING NOISE
    • 方法,预处理程序,语音识别系统和通过删除噪声提取目标语音的程序产品
    • US20080270131A1
    • 2008-10-30
    • US12105621
    • 2008-04-18
    • Takashi FukudaOsamu IchikawaMasafumi Nishimura
    • Takashi FukudaOsamu IchikawaMasafumi Nishimura
    • G10L15/00G10L19/14
    • G10L15/20G10L15/02G10L21/02G10L21/0272G10L2021/02161
    • The present invention relates to a method, preprocessor, speech recognition system, and program product for extracting a target speech by removing noise. In an embodiment of the invention target speech is extracted from two input speeches, which are obtained through at least two speech input devices installed in different places in a space, applies a spectrum subtraction process by using a noise power spectrum (Uω) estimated by one or both of the two speech input devices (Xω(T)) and an arbitrary subtraction constant (α) to obtain a resultant subtracted power spectrum (Yω(T)). The invention further applies a gain control based on the two speech input devices to the resultant subtracted power spectrum to obtain a gain-controlled power spectrum (Dω(T)). The invention further applies a flooring process to said resultant gain-controlled power spectrum on the basis of arbitrary Flooring factor (β) to obtain a power spectrum for speech recognition (Zω(T)).
    • 本发明涉及通过去除噪声来提取目标语音的方法,预处理器,语音识别系统和程序产品。 在本发明的一个实施例中,从通过安装在空间中的不同位置的至少两个语音输入设备获得的两个输入语音提取目标语音,通过使用由一个估计的噪声功率谱(Uomega)来应用频谱减法处理 或两个语音输入装置(Xomega(T))和任意减法常数(α)两者以获得合成的减去的功率谱(Yomega(T))。 本发明还将基于两个语音输入装置的增益控制应用于合成的减去的功率谱以获得增益控制的功率谱(Domega(T))。 本发明还基于任意地板因子(β)对所得的增益控制功率谱进行地板处理,以获得用于语音识别的功率谱(Zomega(T))。
    • 18. 发明授权
    • Supermagnetostrictive alloy and method of preparation thereof
    • 超磁致伸缩合金及其制备方法
    • US06800143B1
    • 2004-10-05
    • US10204408
    • 2002-11-21
    • Tomoyuki KakeshitaTakashi FukudaTetsuya Takeuchi
    • Tomoyuki KakeshitaTakashi FukudaTetsuya Takeuchi
    • H01F100
    • H01F1/0306C21D6/00C22C38/002H01L41/20Y02P10/212
    • The present invention provides a supermagnetostrictive alloy capable of providing a larger shift (lager magnetostriction) with excellent workability, which is applicable to an actuator in response to advances in downsizing of electronic devices and upgrading of medical instruments and production apparatuses. The supermagnetostrictive alloy has a degree of order of 0.6 to 0.95 achieved by subjecting Fe3−xPt1+x(−0.02≦×≦0.2) to a heat treatment. The present invention also provides a method for the preparation of a supermagnetostrictive alloy having a magnetostriction of 0.3% or more, particularly 0.5% or more, comprising the steps of subjecting the Fe3−xPt1+x alloy of a raw material to a homogenization annealing, and then subjecting the resulting product to a heat treatment at 700 to 1000 K for 0.5 to 600 hours.
    • 本发明提供一种能够提供更好的可移动性(超大型磁致伸缩)的超磁致伸缩合金,其具有优异的可加工性,其适用于致动器,以响应电子设备的小型化和医疗仪器和生产设备的升级。 超磁致伸缩合金具有通过使Fe 3-xPt 1 + x(-0.02 <= x <= 0.2)进行热处理而获得的0.6至0.95的量级。 本发明还提供一种具有0.3%以上,特别是0.5%以上的磁致伸缩性的超磁致伸缩合金的制造方法,该方法包括以下步骤:对原料的Fe 3-xPt 1 + x合金进行均化退火, 然后将所得产物在700至1000K下进行热处理0.5至600小时。