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    • 13. 发明申请
    • PSEUDONOISE GENERATION DEVICE AND PSEUDONOISE GENERATION METHOD
    • US20130016851A1
    • 2013-01-17
    • US13637283
    • 2010-03-25
    • Koji AsaoJunichi Tanaka
    • Koji AsaoJunichi Tanaka
    • H04B1/00
    • B60Q5/008B60L3/00B60Q5/00B60Q9/00
    • A determination part specifies the road width upon which the vehicle CR is traveling based on the current position of a vehicle CR detected by a position detection part, referring to road width information in a storage part. The part determines an arrival ranges for pseudonoise being outputted outside the vehicle based on the specified road width. Subsequently, a control part determines audio volume settings for pseudonoise from left and right speakers of a pseudonoise generation part, based on the determined arrival range. As a result, pseudonoise at audio volumes corresponding to the audio volume settings is outputted outside the vehicle from the speakers of the part. Thus, the output of the pseudo engine noise is properly controlled with in consideration for the presence of the possible subject to be warned in a variety of surroundings changed depending on the classification of the road.
    • 参照存储部分中的道路宽度信息,确定部分基于由位置检测部检测到的车辆CR的当前位置来指定车辆CR行驶的道路宽度。 该部分基于指定的道路宽度来确定在车辆外部输出的伪噪声的到达范围。 随后,控制部分基于所确定的到达范围来确定来自伪噪音生成部分的左侧和右侧扬声器的伪噪声的音频音量设置。 结果,对应于音频音量设置的音频音量的伪噪声从该部件的扬声器输出到车外。 因此,考虑到根据道路的分类而改变的各种环境中可能的被摄对象的存在,适当地控制伪引擎噪声的输出。
    • 14. 发明授权
    • Optical transmission module, electronic device and method for manufacturing optical transmission module
    • 光传输模块,电子设备及光传输模块制造方法
    • US08168940B2
    • 2012-05-01
    • US12674256
    • 2008-12-24
    • Junichi TanakaHiroshi SameshimaNaru Yasuda
    • Junichi TanakaHiroshi SameshimaNaru Yasuda
    • G02B6/42
    • G02B6/4214G02B6/4212G02B6/43Y10T29/49002
    • A light transmission module includes a light transmission path for transmitting light, an optical element including a light emitting and receiving surface for optically coupling with the light transmitted by the light transmission path, and being formed with a light emitting and receiving point having a function of photoelectric conversion and an electrode pad on the light emitting and receiving surface. The light transmission module further includes a substrate mounted with the optical element and an electrical wiring and an electrical connecting member for electrically connecting the electrode pad and the electrical wiring. The substrate includes a wiring exposed surface where the electrical wiring is exposed. The electrical connecting member is made of solidified object of a liquid conductive material arranged to contact the electrical wiring, which is exposed at the wiring exposed surface, and the electrode pad.
    • 光传输模块包括用于透射光的光传输路径,包括光发射和接收表面的光学元件,用于与由光传输路径透射的光光学耦合,并且形成有具有以下功能的发光和接收点: 光电转换和发光和接收表面上的电极焊盘。 光传输模块还包括安装有光学元件的基板和用于电连接电极焊盘和电线的电线和电连接构件。 基板包括布线暴露表面,其中电线被暴露。 电连接构件由布置成接触暴露在布线露出表面处的电布线和电极焊盘的液体导电材料的固化物体制成。
    • 15. 发明申请
    • IMAGE PROCESSING APPARATUS AND METHOD
    • 图像处理装置和方法
    • US20110243234A1
    • 2011-10-06
    • US13120685
    • 2009-10-02
    • Kenji KondoJunichi Tanaka
    • Kenji KondoJunichi Tanaka
    • H04N7/32
    • H04N19/00781G06K9/36H04N19/61H04N19/82
    • The present invention relates to an image processing apparatus and method in which an increase in the amount of encoding can be suppressed while realizing high-performance motion compensation.In step S1, a motion vector corresponding to the difference between the coordinates of an encoding target block and the coordinates of a reference block is calculated. In step S2, a horizontal-direction fine adjustment filter Hh is generated. In step S3, a vertical-direction fine adjustment filter Hv is generated. In step S4, the pixel values of the reference block is finely adjusted by applying the horizontal-direction and vertical-direction fine adjustment filters Hh and Hv to the reference block. The reference block is then assigned to the encoding target block, thereby generating a motion-compensated prediction image. In step S5, the difference signal between the pixel values of the encoding target image and the pixel values of the prediction image is calculated, and is subjected to orthogonal transform and quantization. The resulting difference signal is then encoded. Meanwhile, the integer-precision motion vector is also encoded. The present invention is applicable to an image encoding apparatus for compression-encoding moving images and to an image decoding apparatus for decoding the encoded moving images.
    • 本发明涉及一种在实现高性能运动补偿的同时可以抑制编码量的增加的图像处理装置和方法。 在步骤S1中,计算与编码对象块的坐标之间的差与参考块的坐标对应的运动矢量。 在步骤S2中,产生水平方向微调滤波器Hh。 在步骤S3中,产生垂直方向微调滤波器Hv。 在步骤S4中,通过将水平方向和垂直方向微调滤波器Hh,Hv施加到基准块来精细地调整基准块的像素值。 然后将参考块分配给编码目标块,从而生成运动补偿预测图像。 在步骤S5中,计算编码对象图像的像素值与预测图像的像素值之间的差分信号,并进行正交变换和量化。 然后对所得差分信号进行编码。 同时,整数精度运动矢量也被编码。 本发明可应用于用于对运动图像进行压缩编码的图像编码装置和用于对编码的运动图像进行解码的图像解码装置。