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    • 1. 发明授权
    • Method of pattern recognition and apparatus thereof
    • 模式识别方法及其装置
    • US4272756A
    • 1981-06-09
    • US37034
    • 1979-05-08
    • Shigeru KakumotoYoshiji FujimotoKunihiro Okada
    • Shigeru KakumotoYoshiji FujimotoKunihiro Okada
    • G06K9/00G06F17/50G06K9/20G06T1/00G06T3/00G06T7/60G06K9/34
    • G06K9/2054G06K2209/01
    • In an apparatus for pattern recognition provided with convertion means for converting a two-dimensional image carried on a picture into pattern signals, memory means for temporally storing the pattern signals from said convertion means, and recognition means for recognizing the pattern signals read out from said memory means, disclosed is a method wherein said picture is divided into a plurality of partial pictures in a manner that adjacent ones of the partial pictures hold in common a partially overlapped region, said convertion means convert, on a one-by-one basis of the partial pictures, the two-dimentional image into pattern signals to be stored in said memory means, and the stored pattern signals are, on a one-by-one basis of the partial pictures, read out to be recognized by said recognition means.
    • 在一种用于模式识别的装置中,设置有用于将图像上携带的二维图像转换为图形信号的转换装置,用于在时间上存储来自所述转换装置的图形信号的存储装置,以及用于识别从所述转换装置读出的图形信号的识别装置 存储装置公开了一种方法,其中所述图像以相邻的部分图像共同保持部分重叠区域的方式被划分为多个部分图像,所述转换装置逐个地转换 将部分图像,二维图像转换为要存储在所述存储装置中的图形信号,并且存储的图案信号被逐个地读出,以被所述识别装置识别。
    • 3. 发明授权
    • Neuro-computer
    • 神经计算机
    • US5170463A
    • 1992-12-08
    • US885239
    • 1992-05-20
    • Yoshiji FujimotoNaoyuki FukudaToshio Akabane
    • Yoshiji FujimotoNaoyuki FukudaToshio Akabane
    • G06N3/10
    • G06N3/10
    • A neurocomputer connected to a host computer, the neurocomputer having a plurality of processor elements, each of the processor elements being placed at each of node of a lattice respectively, the neurocomputer includes a plurality of first processor elements, each of the first processor elements being placed at a node of the lattice, capable of transmitting data from and to the host computer and capable of transmitting the data to one of adjacent processor elements, a plurality of second processor elements, each of the second processor elements being placed at a node of the lattice, capable of receiving the data from one of adjacent processor elements, and capable of sending the data to another adjacent processor elements from which the data is not outputted. The neurocomputer also includes a plurality of rectangular regions, each of the rectangular regions including a plurality of the processor elements, a plurality of physical processors, each of the processors being placed in each of the rectangular regions and connected with adjacent processors each other, each of the processors being capable of inputting and outputting to and from the host computer and having all functions of the processor elements included in the rectangular region, and a device for distributing the physical processors to one or a plurality of divided sections formed in the rectangular regions in such a manner that each of the sections is substantially equally assigned to each of the physical processors by permutation.
    • 连接到主计算机的神经计算机,神经计算机具有多个处理器元件,每个处理器元件分别放置在格子的每个节点处,神经计算机包括多个第一处理器元件,每个第一处理器元件为 放置在格子的节点上,能够从主计算机发送数据并能够将数据发送到相邻的处理器元件之一,多个第二处理器元件,每个第二处理器元件被放置在 该格子能够从相邻处理器元件之一接收数据,并且能够将数据发送到不从其输出数据的另一相邻处理器元件。 神经计算机还包括多个矩形区域,每个矩形区域包括多个处理器元件,多个物理处理器,每个处理器被放置在每个矩形区域中并且彼此相邻处理器相互连接 的处理器能够输入和输出到主计算机并且具有包括在矩形区域中的处理器元件的所有功能,以及用于将物理处理器分配到形成在矩形区域中的一个或多个分割部分的设备 以这样的方式,每个部分通过排列基本均等地分配给每个物理处理器。
    • 5. 发明授权
    • Voice recording and reproducing apparatus
    • 录音和录音设备
    • US5218640A
    • 1993-06-08
    • US839087
    • 1992-02-24
    • Tomokazu MorioAtsunori KitohYoshiji Fujimoto
    • Tomokazu MorioAtsunori KitohYoshiji Fujimoto
    • G06F17/21G11C7/16H04M1/65
    • G06F17/21G11C7/16H04M1/65G11C2207/16
    • A voice recording and reproducing apparatus which includes a voice encoder for encoding a voice signal into a voice code, an address counter, a voice code memory in which the voice code is circulatively stored as specified by the address counter, a discriminator for determining whether the voice signal inputted is a voiced signal or whether the voice signal inputted is a silent signal, and a register for storing an address value of the address counter when the discriminator indicates that the silent signal has changed into the voiced signal. During reproduction, the starting address of the reproduction is determined by a stored address. The stored address represents the address value in the address counter at the time when the discriminator indicates that a silent signal has changed to a voiced signal.
    • 一种语音记录和再现装置,其包括用于将语音信号编码成语音代码的语音编码器,地址计数器,语音代码存储器,其中通过地址计数器指定的循环地存储语音代码;鉴别器,用于确定是否 输入的语音信号是有声信号还是输入的语音信号是否是无声信号,以及当鉴别器指示无声信号已经变成有声信号时,用于存储地址计数器的地址值的寄存器。 在再现期间,再现的起始地址由存储的地址确定。 存储的地址表示当鉴别器指示无声信号已经改变为有声信号时地址计数器中的地址值。
    • 7. 发明授权
    • Fingerprint input apparatus
    • 指纹输入装置
    • US5177802A
    • 1993-01-05
    • US663126
    • 1991-03-04
    • Yoshiji FujimotoMasayuki KatagiriNaoyuki FukudaKenji Sakamoto
    • Yoshiji FujimotoMasayuki KatagiriNaoyuki FukudaKenji Sakamoto
    • A61B5/117G06K9/00G07C9/00
    • G06K9/00033A61B5/1172G06K9/00026G07C9/00158
    • A fingerprint input apparatus is constructed to have simple construction. It serves to provide an excellen S/N ratio and reliably input a fingerprint pattern. The fingerprint input apparatus includes a light source for emitting a ray of light, a lightguide plate having a predetermined location at which a finger can be contact with the lightguide plate, a unit for directing the ray of light into at least one surfaces of the lightguide plate in a manner to keep such an angle of incidence as allowing the ray of light to be totally reflected within the lightguide plate, the lightguide plate being constructed to direct the ray of light into the predetermined location, and an image pickup unit located near the predetermined location of the lightside plate and outside of an opposite surface to a surface having the predetermined location, the image pickup unit being constructed to pick up a right irregularly reflected on a fingerprint surface of the finger contacted with the predetermined location.
    • 构造指纹输入装置具有简单的结构。 它可以提供卓越的S / N比,并可靠地输入指纹图案。 指纹输入装置包括用于发射光线的光源,具有手指可以与光导板接触的预定位置的光导板,用于将光线引导到光导的至少一个表面的单元 板以保持这样的入射角,使得光线在光导板内完全反射,光导板被构造成将光线引导到预定位置,以及位于该光导板附近的图像拾取单元 所述光侧板的预定位置和与具有所述预定位置的表面相反的表面的外侧,所述图像拾取单元构造成拾取与所述预定位置接触的所述手指的指纹表面上不规则地反射的右侧。
    • 9. 发明授权
    • Decoder for delta-modulated code
    • 解码器用于增量调制码
    • US5043729A
    • 1991-08-27
    • US580353
    • 1990-09-07
    • Yoshiji Fujimoto
    • Yoshiji Fujimoto
    • H03M3/02
    • H03M3/02
    • A decoder for decoding a delta-modulated code represented with binary digit "1" or "0" to convert it into an analog signal, wherein when the delta-modulated code takes the first value ("1" or "0"), a positive pulse signal is applied to an integrator to increase its accumulated value by a constant value and when the delta-modulated code takes the second value ("0" or "1"), a negative pulse signal is appied to the integrator to decrease its accumulated value by the constant value, and this accumulated value of the integrator is outputted as an analog signal which corresponds to a code train of the delta-modulated code. The decoder is characterized in that it has a pulse width modulater which limits an effective pulse width of the pulse signal by performing pulse width modulation of the positive or negative pulse signal in response to a control signal.
    • 一种解码器,用于对用二进制数字“1”或“0”表示的增量调制码进行解码以将其转换成模拟信号,其中当Δ调制码采用第一值(“1”或“0”)时, 正脉冲信号被施加到积分器以将其累加值增加一个常数值,并且当Δ调制码采用第二值(“0”或“1”)时,向积分器施加负脉冲信号以减小其 累积值为恒定值,积分器的累计值作为与增量调制码的代码序列对应的模拟信号输出。 解码器的特征在于其具有脉冲宽度调制器,其通过响应于控制信号执行正或负脉冲信号的脉冲宽度调制来限制脉冲信号的有效脉冲宽度。