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    • 1. 发明授权
    • Control data setting method and data storage medium of active mount control apparatus
    • 主动安装控制装置的控制数据设定方法和数据存储介质
    • US06459970B2
    • 2002-10-01
    • US09881692
    • 2001-06-18
    • Katsuhiro GotoYoshihiko HaginoKatsuhisa YanoTatsuya Suzuki
    • Katsuhiro GotoYoshihiko HaginoKatsuhisa YanoTatsuya Suzuki
    • G06F700
    • F16F15/0275F16F13/26G05B13/024
    • Control data such as an optimal filter coefficient or the like of an engine mount is obtained by adaptation control or the like with respect to a reference vehicle F provided with a reference engine mount 20k, and the control data is stored in a reference data map storage medium 35 as a reference data map. Mount characteristics of the reference engine mount and a mass-produced engine mount 20m are measured. A correction data map which is a deviation from the reference data map is obtained for the control data of the mass-produced engine mount from a difference between both the mount characteristics, and the correction data map is stored in the correction data map storage medium 36. Both the data map storage media are added to the active control apparatus of the mass-produced vehicle M. Using both the data maps, it is possible to appropriately and actively control the vibration of the mass-produced vehicle without variation.
    • 通过对设置有基准发动机支架20k的基准车辆F进行适应控制等获得诸如发动机支架的最佳滤波器系数等的控制数据,并且将控制数据存储在参考数据映射存储器 介质35作为参考数据图。 测量参考发动机支架和大规模生产的发动机支架20m的安装特性。 从两个安装特性之间的差异获得与质量产生的发动机支架的控制数据相对应的参考数据图的偏差校正数据图,校正数据图被存储在校正数据图存储介质36中 数据图存储介质被添加到批量生产车辆M的主动控制装置中。使用这两个数据图,可以适当且主动地控制大规模生产的车辆的振动而不变化。
    • 2. 发明授权
    • Fluid-filled active vibration damping device
    • 流体填充主动减振装置
    • US06406010B1
    • 2002-06-18
    • US09495285
    • 2000-01-31
    • Katsuhisa YanoTakashi YoshidaKatsuhiro GotoYoshihiko Hagino
    • Katsuhisa YanoTakashi YoshidaKatsuhiro GotoYoshihiko Hagino
    • F16F0500
    • F16F13/106F16F13/264
    • A fluid-filled active vibration damping device, including an elastic body which is elastically deformed when a vibration is input to the damping device and which partially defines a pressure receiving chamber as a portion of a fluid chamber filled with a non-compressible fluid, an oscillating body which partially defines the pressure receiving chamber, a drive device which oscillates the oscillating body, so as to control a pressure of the non-compressible fluid in the pressure receiving chamber, the drive device comprising an output member which is formed independent of the oscillating body and which is movable in a direction of oscillation of the oscillating body, a first biasing device which biases the oscillating body toward the output member of the drive device, and a second biasing device which biases the output member of the drive device toward an outside surface of the oscillating body, so that the output member is held in direct or indirect contact with the outside surface of the oscillating body.
    • 一种流体填充的主动减振装置,包括弹性体,当弹性振动被输入到阻尼装置时弹性变形,并且部分地限定作为填充有不可压缩流体的流体室的一部分的压力接收室, 部分地限定压力接收室的摆动体,使振荡体振动的驱动装置,以控制压力接收室内的不可压缩流体的压力,该驱动装置包括独立于压力容纳室形成的输出部件 摆动体,其能够在摆动体的摆动方向上移动;将振动体朝向驱动装置的输出部件偏置的第一偏置装置,以及将驱动装置的输出部件朝向驱动装置偏置的第二偏置装置 摆动体的外表面,使得输出构件与外表面保持直接或间接接触 摆动体。
    • 4. 发明申请
    • VIDEO DECODING DEVICE AND VIDEO DECODING METHOD
    • 视频解码设备和视频解码方法
    • US20080240244A1
    • 2008-10-02
    • US11856911
    • 2007-09-18
    • Noriaki KitadaKatsuhisa YanoKosuke UchidaSatoshi Hoshina
    • Noriaki KitadaKatsuhisa YanoKosuke UchidaSatoshi Hoshina
    • H04N7/26
    • H04N19/577H04N19/105H04N19/174H04N19/61
    • A video decoding device includes: a decoder that decodes an encoded video bit stream to generate a prediction error signal; a motion compensator that performs a motion compensation prediction using a motion vector that refers at least one picture to generate a motion compensation prediction signal; a weighted predictor that generates a weighted prediction signal from a linear sum of (1) a product of the motion compensation prediction signal and a first weighting coefficient and (2) a second weighting coefficient; a selector that selects one of the motion compensation prediction signal and the weighted prediction signal; and an adder that adds (1) selected one of the weighted prediction signal and the motion compensation prediction signal and (2) the prediction error signal.
    • 视频解码装置包括:解码器,对解码的视频比特流进行解码,生成预测误差信号; 运动补偿器,其使用参考至少一个图像以生成运动补偿预测信号的运动矢量来执行运动补偿预测; 加权预测器,其从(1)运动补偿预测信号和第一加权系数的乘积和(2)第二加权系数的线性和生成加权预测信号; 选择器,其选择运动补偿预测信号和加权预测信号中的一个; 以及加法器,其添加(1)所选择的加权预测信号和运动补偿预测信号之一,以及(2)预测误差信号。
    • 5. 发明申请
    • Fluid-filled vibration damping device
    • 流体填充减振装置
    • US20060043658A1
    • 2006-03-02
    • US11210880
    • 2005-08-25
    • Eiji TanakaKatsuhisa Yano
    • Eiji TanakaKatsuhisa Yano
    • F16F13/00
    • F16F13/10F16F13/105F16F13/108
    • A fluid-filled vibration damping device comprising: a rubber elastic body connecting the first and second mounting members; a first pressure receiving chamber partially formed by the elastic body; a first equilibrium chamber partially formed by a first flexible rubber layer; a first orifice passage connecting the first pressure receiving and equilibrium chambers. The elastic body has a pair of pockets open in its outer circumferential surface and located on both sides in a diametric direction of the support shaft of the first mounting member, while being fluid-tightly covered by the second mounting member to form a pair of operating fluid chambers which are connected by a second orifice passage. The operating fluid chambers functions as a second receiving pressure chamber partially formed by the rubber elastic body and a second equilibrium chamber partially formed by a second flexible rubber layer.
    • 一种流体填充的减震装置,包括:连接第一和第二安装构件的橡胶弹性体; 由所述弹性体部分地形成的第一受压室; 由第一柔性橡胶层部分地形成的第一平衡室; 连接第一压力接收室和平衡室的第一孔口通道。 弹性体具有在其外周面上开口的一对口袋,并且位于第一安装构件的支撑轴的直径方向的两侧,同时由第二安装构件流体密封地形成一对操作 通过第二孔通道连接的流体室。 工作流体室用作由橡胶弹性体部分地形成的第二接收压力室和由第二柔性橡胶层部分地形成的第二平衡室。
    • 6. 发明授权
    • Video signal processing apparatus
    • 视频信号处理装置
    • US06483947B1
    • 2002-11-19
    • US09270531
    • 1999-03-17
    • Ken YasueKatsuhisa YanoTakao KashiroHisaji Murata
    • Ken YasueKatsuhisa YanoTakao KashiroHisaji Murata
    • G06K936
    • H04N19/40H04N5/78266H04N5/783H04N9/8042
    • A video signal processing apparatus processes coded data obtained by compressively coding a digitized video signal. The apparatus includes a specific component removing unit for removing specific components in the coded data. The specific component removing unit has a variable-length decoding unit for subjecting the variable-length coded data to variable-length decoding, an inverse quantization unit for inversely quantizing the processing result of the variable-length decoding unit, by using a first quantization matrix, a quantization unit for quantizing the processing result of the inverse quantization unit, by using a second quantization matrix, and a variable-length coding unit for subjecting the processing result of the quantization unit to variable-length coding. Therefore, the data quantity of the variable-length coded data can be reduced without significantly increasing the circuit scale.
    • 视频信号处理装置处理通过对数字化视频信号进行压缩编码获得的编码数据。 该装置包括用于去除编码数据中的特定组件的特定组件去除单元。 特定分量去除单元具有用于对可变长度编码数据进行可变长度解码的可变长度解码单元,用于对可变长度解码单元的处理结果进行逆量化的逆量化单元,通过使用第一量化矩阵 用于通过使用第二量化矩阵量化逆量化单元的处理结果的量化单元和用于对量化单元的处理结果进行可变长度编码的可变长度编码单元。 因此,可以减少可变长度编码数据的数据量而不显着增加电路规模。
    • 8. 发明授权
    • Fluid-filled vibration-isolator
    • 流体填充隔振器
    • US06199840B1
    • 2001-03-13
    • US09189840
    • 1998-11-12
    • Katsuhisa Yano
    • Katsuhisa Yano
    • F16F1300
    • F16F13/14
    • A fluid-filled vibration-isolator includes a main axis fitting, an outer cylinder-shaped fitting disposed at the outside of the main axis fitting, a rubber elastic member, a stopper fitting disposed at the circumferential surface of the main axis fitting, and a fluid contained in fluid chambers. The rubber elastic member has a pair of ring-shaped side walls, a pair of partition walls, and an orifice passage disposed in at least one of the partition walls. The rubber elastic member has a spacer filling a gap between the axial end surface of the stopper fitting and the ring-shaped side wall facing each other. The axial end surface of the stopper fitting is free from the fluid chamber not to face the fluid chamber.
    • 流体填充隔振器包括主轴配件,设置在主轴配件外侧的外筒形配件,橡胶弹性件,设置在主轴配件的圆周表面的止动配件,以及 容纳在流体室中的流体。 橡胶弹性构件具有一对环形侧壁,一对分隔壁和设置在至少一个分隔壁中的孔口通道。 橡胶弹性构件具有填充止动配件的轴向端面与彼此面对的环形侧壁之间的间隙的间隔件。 止动配件的轴向端面没有流体室不面对流体室。
    • 9. 发明申请
    • DECODING DEVICE AND DECODING METHOD
    • 解码设备和解码方法
    • US20090034615A1
    • 2009-02-05
    • US12141657
    • 2008-06-18
    • Katsuhisa Yano
    • Katsuhisa Yano
    • H04N7/32
    • H04N19/127H04N19/159H04N19/174H04N19/176H04N19/436H04N19/61
    • According to one embodiment, a decoding device, includes an input unit configured to input a moving image stream wherein each image is encoded in macro-blocks of n×n pixels to be generated by being divided in a matrix shape, a detection unit configured to analyze information of a slice composed of more than one macro-block included in the moving image stream input from the input unit and detects inter-macro-blocks in the slice, two or more decoding units configured to decode the moving image stream in macro-blocks, and a control unit configured to make the decoding unit decode intra-macro-blocks in the slice after making the two or more decoding units decode in parallel the inter-macro-blocks in the slice detected by the detection unit.
    • 根据一个实施例,解码装置包括:输入单元,被配置为输入运动图像流,其中每个图像被编码为以矩阵形状分割为要生成的n×n个像素的宏块;检测单元,被配置为分析信息 由包括在从所述输入单元输入的运动图像流中的多于一个的宏块组成的切片,检测所述切片中的宏块间,配置成对宏块中的运动图像流进行解码的两个或多个解码单元, 以及控制单元,被配置为使得所述解码单元在使所述两个或更多个解码单元并行地解码由所述检测单元检测到的切片中的宏块间解码所述切片中的宏块内。
    • 10. 发明申请
    • Information processing apparatus, decoder, and operation control method of playback apparatus
    • 重放装置的信息处理装置,解码器和操作控制方法
    • US20080069244A1
    • 2008-03-20
    • US11898160
    • 2007-09-10
    • Katsuhisa Yano
    • Katsuhisa Yano
    • H04N7/12
    • H04N19/86H04N19/176H04N19/436H04N19/44H04N19/61
    • According to one embodiment, an information processing apparatus includes an input unit configured to input a moving picture stream encoded for respective macroblocks of n×n pixels, which are generated by dividing each image in a matrix pattern, an analysis unit configured to analyze information of a slice which is included in the moving picture stream input by the input unit and is configured by at least one macroblock row obtained by arranging macroblocks in a row direction, and to acquire type information of each macroblock, at least two decoding processing unit configured to execute decoding processes for respective macroblocks, and an control unit configured to divide the macroblock row which configures the slice based on the type information of each macroblock acquired by the analysis unit, and to control the at least two decoding processing unit to execute in parallel decoding processes of the macroblock row.
    • 根据一个实施例,一种信息处理设备包括:输入单元,被配置为输入通过以矩阵模式划分每个图像而生成的n×n个像素的各个宏块编码的运动图像流;分析单元,被配置为分析切片的信息 其被包括在由输入单元输入的运动图像流中,并且由通过在行方向上布置宏块获得的至少一个宏块行构成,并且获取每个宏块的类型信息,至少两个解码处理单元被配置为执行解码 处理各个宏块,以及控制单元,被配置为基于由分析单元获取的每个宏块的类型信息来划分构成该片的宏块行,并且控制至少两个解码处理单元执行并行解码处理 宏块行。