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    • 2. 发明公开
    • Physical movement analyzer and physical movement analyzing method
    • 物理运动分析仪和物理运动分析方法
    • EP1466557A2
    • 2004-10-13
    • EP04008420.4
    • 2004-04-07
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Inoue, ShigeyukiTanaka, ShinjiShiraishi, TakakoYamamoto, HiroshiKawasaki, Yoshitaka
    • A61B5/11
    • A61B5/112A61B5/1038
    • The acceleration information detecting unit (11) of an acceleration detecting apparatus (10) have an acceleration sensor with at least one-axis measures the acceleration in the back and forth direction (or the right and left direction) of a walking person and sends the acceleration data indicating this acceleration to the wireless communication control unit (12). The wireless communication control unit (12) sends the acceleration data that is measured in the acceleration information detecting unit (11) to the physical movement analyzer (20) using a short-distance wireless communication method. On the other hand, the wireless communication control unit (21) of the physical movement analyzer (20) receives the acceleration data that is sent from the acceleration detecting apparatus (10) using a short-distance wireless communication method and sends it to the walking speed detecting unit (22). The walking speed detecting unit (22) estimates the strides and a walking period based on the received acceleration data and calculates the walking speed based on the strides and the walking period.
    • 加速度检测设备(10)的加速度信息检测单元(11)具有至少一个轴的加速度传感器测量步行者的前后方向(或左右方向)上的加速度, 指示该加速度的加速度数据给无线通信控制单元(12)。 无线通信控制单元(12)使用短距离无线通信方法将在加速度信息检测单元(11)中测量的加速度数据发送到物理运动分析器(20)。 另一方面,物理运动分析器(20)的无线通信控制单元(21)接收使用短距离无线通信方法从加速度检测设备(10)发送的加速度数据,并将其发送到步行 速度检测单元(22)。 步行速度检测部(22)基于接收到的加速度数据来估计步幅和步行周期,并基于步幅和步行周期来计算步行速度。
    • 3. 发明公开
    • Content delivering system
    • 系统zum abgeben von Inhalten
    • EP1453274A2
    • 2004-09-01
    • EP04004531.2
    • 2004-02-27
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Yamamoto, HiroshiOnoue, SuenoriItoh, Shin
    • H04L29/06
    • G06Q30/02
    • Herein disclosed is a content delivering system, comprising: a delivery server (10) for delivering content data indicative of a predetermined content and a schedule for reproducing the content; and a content player (20) for receiving the content data delivered by the delivery server (10), and reproducing the predetermined content in accordance with the schedule on the basis of the content data at a content reproducing place, and in which the content player (20) is operative to collect voices in the vicinity of the content reproducing place; and transmit voice information data indicative of the voices thus collected in the vicinity of the content reproducing place.
    • 这里公开了一种内容传送系统,包括:传送服务器(10),用于传送指示预定内容的内容数据和用于再现内容的日程表; 以及内容播放器(20),用于接收由所述传送服务器(10)发送的内容数据,并且根据所述内容再现位置上的内容数据再现所述预定内容,并且所述内容播放器 (20)可操作以收集内容再现位置附近的声音; 并且发送指示如此收集在内容再现位置附近的语音的语音信息数据。
    • 6. 发明公开
    • Character recognition apparatus
    • 字符识别装置
    • EP0652532A2
    • 1995-05-10
    • EP94117452.6
    • 1994-11-04
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Kojima, YoshihiroYamamoto, HiroshiMaruno, SusumuShimeki, Yasuharu
    • G06K9/48
    • G06K9/48G06K2209/01
    • A character recognition apparatus is provided which, even when there occurs a local positional deviation of a character to be recognized, can stably recognize the character with high accuracy. For each contour point of a character image, a contouring direction code imparting unit 15 obtains a contouring direction code in which a contouring line direction of the character is quantized in four directions. A contouring direction code frequency calculation unit 16 calculates the frequency of each contouring direction code for each subregion of the character image. A contouring direction code density calculation unit 17 calculates the density of the contouring direction codes of each subregion, by using the frequency of the direction codes and the size of the respective subregion. A contouring direction code space blurring unit 18 conducts a weighted addition on each of the obtained contouring direction codes by adding, with a predetermined weight coefficient, the contouring direction code densities of neighbor subregions which are adjacent to the respective subregion with the subregion as the center and in a direction perpendicular to that of each of the contouring direction codes.
    • 提供了一种字符识别装置,即使当发生待识别字符的局部位置偏差时,也可以以高准确度稳定地识别字符。 对于字符图像的每个轮廓点,轮廓线方向码赋予单元15获得轮廓线方向码,其中字符的轮廓线方向在四个方向上被量化。 轮廓方向码频率计算单元16针对字符图像的每个子区域计算每个轮廓方向码的频率。 轮廓方向代码密度计算单元17通过使用方向代码的频率和各个子区域的尺寸来计算每个子区域的轮廓方向代码的密度。 轮廓化方向代码空间模糊单元18通过以预定权重系数将以子区域为中心的相邻子区域的轮廓方向代码密度与所获得的轮廓方向代码中的每一个相邻的子区域的轮廓方向代码密度相加 并且在与每个轮廓方向代码的方向垂直的方向上。
    • 7. 发明公开
    • Recognition unit and recognition apparatus
    • Erkennungseinheit undErkennungsgerät。
    • EP0533099A2
    • 1993-03-24
    • EP92115733.5
    • 1992-09-15
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Shimeki, YasuharuMaruno, SusumuKohda, ToshiyukiSakaue, ShigeoYamamoto, HiroshiKojima, Yoshihiro
    • G06K9/66G06F15/80
    • G06K9/6281G06N3/04
    • A recognition apparatus is provided with a plurality of recognition units organized in a multilayered hierarchical structure. Each of the recognition units includes a signal input section (1), a quantizer (2) for performing a quantization according to a signal inputted from the signal input section (1), and a path selecting section (3) for performing a selection of paths according to an output from the quantizer (2). The path selecting section (3) includes a path input section (3a) having at least one path input terminal (3a1-3a8), a path output section (3b) having at least one path output terminal (3b1-3b5), a load distribution selecting section (3d) for selecting a load distribution, and a load setting section (3c0) for changing the strength of connection between the path input terminal (3a1-3a8) and the path output terminal (3b1-3b5) according to the output of the quantizer (2) by the use of the load distribution selected by the load distribution selecting section (3d).
    • 识别装置设置有以多层次分层结构组织的多个识别单元。 每个识别单元包括信号输入部分(1),用于根据从信号输入部分(1)输入的信号进行量化的量化器(2)和用于执行选择 根据量化器(2)的输出的路径。 路径选择部分(3)包括具有至少一个路径输入端(3a1-3a8)的路径输入部(3a),具有至少一个路径输出端(3b1-3b5)的路径输出部(3b),负载 用于选择负载分布的分配选择部分(3d),以及用于根据输出来改变路径输入端子(3a1-3a8)和路径输出端子(3b1-3b5)之间的连接强度的负载设置部分(3c0) 的量化器(2)通过使用由负载分布选择部分(3d)选择的负载分布。
    • 8. 发明公开
    • Optical unit actuator for information recording/reproducing apparatus
    • 为用于记录/再现的装置用于致动光学单元装置。
    • EP0442443A1
    • 1991-08-21
    • EP91101951.1
    • 1991-02-12
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Goto, ShojiKawamura, IchiroYamamoto, Hiroshi
    • G11B7/08G11B7/09
    • G11B7/08582
    • An optical unit actuator for an optical information recording/reproducing apparatus includes an electromagnetic drive mechanism composed of a coil (3, 4) and a magnet (15) cooperative to drive an objective lens (2) mounted on an optical unit (1). One of the coil (3, 4) and the magnet (15) is secured to the optical unit (1). The other of the coil (3, 4) and the magnet (15) is held on a fixed unit (14 - 18) with an elastic support member (21) disposed therebetween, the fixed unit being immovable as against the movable optical unit. The elastic support member (21) substantially dampens or takes up vibration caused by a reaction force creased as a result of acceleration of the objective lens (2) when the objective lens (2) is driven to follow a dynamic radial runout and an axial deflection of an optical disk (7). With the elastic support member (21) thus provided, an optical component, a photoelectric transducer or the optical disk which is disposed on the side of the fixed unit is isolated from vibration. The control characteristics of a system including an optical head, the optical disk and a control circuit for the optical head can, therefore, be improved.
    • 用于在光学信息记录的光学单元的致动器/再现设备包括:在线圈构成的电磁驱动机构(3,4)和一个磁体(15)合作,以驱动物镜(2),其安装于在光学单元(1)。 一个线圈(3,4)和所述磁体(15)被固定在光学单元(1)。 另一线圈(3,4)和所述磁体(15)的与在之间,所述固定单元是不可移动的作为对可动光学单元设在其弹性支撑构件(21)保持的固定单元(14〜18)上。 弹性支撑构件(21)基本上衰减或占用由折痕作为物镜的加速度的结果的反作用力引起的振动(2)当物镜(2)被驱动以遵循在轴向动态径向跳动和偏转 光盘的(7)。 通过具备这样的光学元件的,光电换能器或光盘的所有其上固定单元的一侧设置在所述弹性支承部件(21)被与振动隔离。 包括光学头的系统的控制特性,光盘和用于光学头的控制电路可以,因此,能够提高。