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    • 21. 发明授权
    • Fuel injection apparatus for internal combustion engines
    • 内燃机燃油喷射装置
    • US4622942A
    • 1986-11-18
    • US814500
    • 1985-12-30
    • Shinya NozakiKeiichi YamadaTakeo Kushida
    • Shinya NozakiKeiichi YamadaTakeo Kushida
    • F02M51/00F02D41/40F02M55/00F02M57/02F02M59/20F02M59/24F02M39/00
    • F02D41/40F02M55/00F02M59/205F02M59/24Y02T10/44
    • A fuel injection apparatus comprises a first storing device for temporarily storing cut-off fuel drained after the termination of a fuel injection, a second storing device of changeable volume for temporarily storing fuel for intake, the second storing device having a movable member which is movable in response to the quantity of fuel introduced therein, a detector for producing a detection signal showing an actural position of the movable member and a clamping device responsive to an electric signal for clamping the movable member. The clamping device is actuated to clamp the movable member in response to the detection signal when the desired amount of fuel is stored therein. The adjusted quantity of fuel stored in the second storing device is supplied to a high pressure chamber together with the cut-off fuel stored in the first storing device during the next fuel intake stroke of a fuel injection pump. As a result, extremely high accuracy control of fuel quantity can be realized.
    • 一种燃料喷射装置,包括:临时存储在燃料喷射终止之后排出的截止燃料的第一存储装置,用于临时储存用于进气的燃料的可更换容积的第二存储装置,所述第二存储装置具有可移动的可动构件 响应于其中引入的燃料量,产生检测信号的检测器,其显示可移动部件的活动位置,以及响应于用于夹紧可移动部件的电信号的夹紧装置。 当存储所需量的燃料时,夹紧装置被致动以响应于检测信号夹紧可动构件。 存储在第二存储装置中的调节量的燃料在燃料喷射泵的下一个燃料进入冲程期间与存储在第一存储装置中的截止燃料一起被供应到高压室。 因此,可以实现极高的燃料量的精度控制。
    • 26. 发明申请
    • SEMICONDUCTOR DEVICE AND METHOD OF MANUFACTURING SEMICONDUCTOR DEVICE
    • 半导体器件及制造半导体器件的方法
    • US20130093023A1
    • 2013-04-18
    • US13806112
    • 2010-06-24
    • Keiichi Yamada
    • Keiichi Yamada
    • H01L27/06H01L21/8249
    • H01L27/0623H01L21/8249
    • A semiconductor device includes a first insulated gate field effect transistor, a second insulated gate field effect transistor, a bipolar transistor, a first element isolation structure formed on a main surface above a pn junction formed between an emitter region and a base region, a second element isolation structure formed on the main surface above a pn junction formed between the base region and a collector region, and a third element isolation structure formed on the main surface opposite to the second element isolation structure relative to the collector region, in which the semiconductor device further includes a bipolar dummy electrode formed on at least one of the first element isolation structure, the second element isolation structure and the third element isolation structure and having a floating potential.
    • 半导体器件包括第一绝缘栅场效应晶体管,第二绝缘栅场效应晶体管,双极晶体管,形成在形成在发射极区和基区之间的pn结上方的主表面上的第一元件隔离结构,第二绝缘栅场效应晶体管 元件隔离结构,形成在形成在基极区域和集电极区域之间的pn结上方的主表面上的主表面,以及形成在与第二元件隔离结构相对的主表面上的第三元件隔离结构,其中半导体 器件还包括形成在第一元件隔离结构,第二元件隔离结构和第三元件隔离结构中的至少一个上并具有浮动电位的双极性虚拟电极。
    • 27. 发明申请
    • Information Processing Apparatus, Information Processing Method, and Program
    • 信息处理装置,信息处理方法和程序
    • US20120035927A1
    • 2012-02-09
    • US13174807
    • 2011-07-01
    • Keiichi YamadaTsutomu Sawada
    • Keiichi YamadaTsutomu Sawada
    • G10L15/00
    • G06K9/0057G06K9/00228G10L25/78
    • An information processing apparatus includes a plurality of information input units that inputs observation information of a real space, an event detection unit that generates event information including estimated position information and estimated identification (ID) information of a user present in the real space based on analysis of the information input from the information input unit, and an information integration processing unit that inputs the event information, and generates target information including a position and user ID information of each user based on the input event information and signal information representing a probability value for an event generating source. Here, the information integration processing unit includes an utterance source probability calculation unit having an identifier, and calculates an utterance source probability based on input information using the identifier in the utterance source probability calculation unit.
    • 一种信息处理装置,包括:输入实际空间的观测信息的多个信息输入单元;基于分析生成包含实际空间中存在的用户的估计位置信息和估计识别(ID)信息的事件信息的事件检测单元 从信息输入单元输入的信息和输入事件信息的信息积分处理单元,根据输入事件信息生成包含各用户的位置和用户ID信息的目标信息,以及表示用户ID信息的概率值的信号信息 事件生成源。 这里,信息积分处理单元包括具有标识符的话音源概率计算单元,并且使用发声源概率计算单元中的标识符,基于输入信息来计算发声源概率。
    • 28. 发明申请
    • SEARCH APPARATUS, SEARCH METHOD, AND PROGRAM
    • 搜索设备,搜索方法和程序
    • US20110313773A1
    • 2011-12-22
    • US13110338
    • 2011-05-18
    • Keiichi YamadaHitoshi Honda
    • Keiichi YamadaHitoshi Honda
    • G10L11/00
    • G06F17/30743G10L17/26
    • A search apparatus includes a sound recognition unit which recognizes input sound, a user information estimation unit which estimates at least one of a physical condition and emotional demeanor of a speaker of the input sound based on the input sound and outputs user information representing the estimation result, a matching unit which performs matching between a search result target pronunciation symbol string and a recognition result pronunciation symbol string for each of plural search result target word strings, and a generation unit which generates a search result word string as a search result for a word string corresponding to the input sound from the plural search result target word strings based on the matching result. At least one of the matching unit and the generation unit changes processing in accordance with the user information.
    • 搜索装置包括识别输入声音的声音识别单元,基于输入声音来估计输入声音的扬声器的身体状况和情感风度中的至少一个的用户信息估计单元,并输出表示估计结果的用户信息 执行搜索结果对象发音符号串与多个搜索结果目标字串中的每一个的识别结果发音符号串的匹配的匹配单元,以及生成单元,其生成搜索结果字串作为单词的搜索结果 基于匹配结果,来自多个搜索结果目标字串的输入声音对应的字符串。 匹配单元和生成单元中的至少一个根据用户信息改变处理。
    • 29. 发明授权
    • Audio signal separation device and method thereof
    • 音频信号分离装置及其方法
    • US07809146B2
    • 2010-10-05
    • US11421619
    • 2006-06-01
    • Atsuo HiroeKeiichi Yamada
    • Atsuo HiroeKeiichi Yamada
    • H04B15/00G10L19/02
    • G10L21/0272
    • Problems of permutation can be solved with high accuracy without utilizing knowledge about original signals or information concerning positions of microphones and the like when each one of plural signals mixed in an audio signal is separated using independent component analysis. A short-time Fourier transformation section generates spectrograms of observation signals from observation signals in time domain. A signal separation section separates the spectrograms of the observation signals into spectrograms of respective signals, to generate spectrograms of separate signals. A permutation problem solution section calculates a scale corresponding to the degree of permutation, e.g., a Kullback-Leiblar information amount calculated by use of a multidimensional probability density function or multidimensional kurtosis, from substantial whole of the spectrograms of the separate signals. Based on the scale, signals at each of frequencies bin of the spectrograms of the separate signals are exchanged between channels, to solve the permutation problem.
    • 当使用独立分量分析将混合在音频信号中的多个信号中的每个信号分离时,不用利用关于原始信号的知识或关于麦克风等的位置的信息,可以高精度地解决置换问题。 短时傅里叶变换部分从时域观测信号产生观测信号的光谱图。 信号分离部将观测信号的光谱图分离成各信号的光谱图,生成分离信号的光谱图。 置换问题解决部分从分离信号的实质上的整个谱图计算对应于置换度的比例,例如,通过使用多维概率密度函数或多维高度计算的Kullback-Leiblar信息量。 基于比例,分离信号的频谱图的每个频率段的信号在信道之间交换,以解决置换问题。