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    • 91. 发明申请
    • WHITE BALANCE ADJUSTMENT DEVICE, IMAGE CAPTURE DEVICE, WHITE BALANCE ADJUSTMENT METHOD, STORAGE MEDIUM, AND INTEGRATED CIRCUIT
    • 白平衡调整设备,图像捕获设备,白平衡调整方法,存储介质和集成电路
    • US20120008009A1
    • 2012-01-12
    • US13234236
    • 2011-09-16
    • TAKESHI ITOHaruo YamashitaDaisuke Sato
    • TAKESHI ITOHaruo YamashitaDaisuke Sato
    • H04N9/73
    • H04N9/735
    • A natural white balance is achieved in images that are captured while emitting a flash. The white balance of an image is adjusted using a WB adjustment portion and a mixture ratio calculation portion estimating a mixture ratio of an external light component and a flashed light component that are present in an image captured with emitting a flash, from the image obtained that is captured while emitting a flash and an image signal that is obtained without emitting a flash. Further, an external light WB coefficient determination portion determines an WB coefficient for the external light, a flashed light WB coefficient setting portion sets a WB coefficient for the flashed light, and a WB processing portion that continuously performs WB processing on the image captured while emitting a flash by using the mixture ratio as an interpolation ratio.
    • 在发射闪光灯时捕获的图像中实现了自然的白平衡。 使用WB调整部分和混合比计算部分来估计图像的白平衡,该混合比计算部分从获得的图像中估计出现在发出闪光的图像中存在的外部光分量和闪烁的光分量的混合比率 在发出闪光的同时被捕获,并且在不发出闪光的情况下获得图像信号。 此外,外部光WB系数确定部分确定外部光的WB系数,闪光灯WB系数设置部分设置闪光灯的WB系数,以及对发射时捕获的图像连续执行WB处理的WB处理部分 通过使用混合比作为内插比例进行闪光。
    • 93. 发明申请
    • DISTANCE ESTIMATING DEVICE, DISTANCE ESTIMATING METHOD, PROGRAM, INTEGRATED CIRCUIT, AND CAMERA
    • 距离估计设备,距离估计方法,程序,集成电路和摄像机
    • US20110063437A1
    • 2011-03-17
    • US12922544
    • 2009-07-29
    • Tatsumi WatanabeYasuhiro KuwaharaTakeshi ItoBumpei TojiDaisuke SatoShinya KiuchiYoshiaki Owaki
    • Tatsumi WatanabeYasuhiro KuwaharaTakeshi ItoBumpei TojiDaisuke SatoShinya KiuchiYoshiaki Owaki
    • H04N7/18
    • G01S17/89G01S7/4802G01S17/36
    • Conventionally, there has been a danger that CCD saturation may occur because of the influence of the shot noise and the environment light if a higher resolution of a distance image showing the distance to an object present in a target space and a higher frame rate are achieved when the distance image is estimated by the TOF method, and the distance accuracy may degrade. An emission frequency selecting unit (7) receives light (S2) reflected from the object when a light source does not emit light and selects illumination light (S1) having an emission frequency insusceptible to the environment light according to the frequency analysis of the reflected light (S2). An image creating unit (6) selects a light source emitting the illumination light having the optimum emission frequency from among prepared light sources (9A to 9N), receives reflected light of the illumination light from the selected light source, and creates the distance image showing the distance to the object. The environment light can be mitigated during light reception, and the noise influence on the distance accuracy can be mitigated when a light-receiving element unit (2) exhibiting higher resolution is used.
    • 通常,存在如下情况:由于拍摄噪声和环境光的影响可能发生CCD饱和,如果示出与目标空间中存在的物体的距离更高的距离图像的分辨率和更高的帧速率 当通过TOF方法估计距离图像时,距离精度可能降低。 当光源不发光时,发射频率选择单元(7)接收从物体反射的光(S2),并根据反射光的频率分析选择具有对环境光不敏感的发射频率的照明光 (S2)。 图像创建单元(6)从准备的光源(9A至9N)中选择发射具有最佳发射频率的照明光的光源,接收来自所选择的光源的照明光的反射光,并创建显示 到物体的距离。 可以在光接收期间减轻环境光,并且当使用具有更高分辨率的光接收元件单元(2)时,可以减轻对距离精度的影响。
    • 94. 发明申请
    • Image processing method, image processing apparatus, image capturing appartus and image processing program
    • 图像处理方法,图像处理装置,图像采集程序和图像处理程序
    • US20100265356A1
    • 2010-10-21
    • US11920708
    • 2006-04-17
    • Hiroaki TakanoTsukasa ItoTakeshi NakajimaDaisuke Sato
    • Hiroaki TakanoTsukasa ItoTakeshi NakajimaDaisuke Sato
    • H04N9/73
    • H04N1/62G06T5/009G06T5/40G06T2207/10024H04N1/6027H04N1/628
    • There is described an image processing method, which makes it possible to continuously and appropriately corrects excessiveness or shortage of light amount in the flesh-color area. The image processing method includes: a light source condition index calculating process for calculating an index representing a light source condition of the captured image data; a correction value calculating process for calculating a correction value of the reproduction target value, corresponding to the index representing the light source condition; a first gradation conversion condition calculating process for calculating a gradation conversion condition for the captured image data, based on the correction value of the reproduction target value; an exposure condition index calculating process for calculating an index representing an exposure condition of the captured image data; and a second gradation conversion condition calculating process for calculating a gradation conversion condition for the captured image data, corresponding to the index representing the exposure condition.
    • 描述了一种图像处理方法,其可以连续且适当地校正肉色区域中的光量过剩或不足。 该图像处理方法包括:光源条件指标计算处理,用于计算表示所捕获图像数据的光源条件的指标; 校正值计算处理,用于计算对应于表示光源条件的指标的再现目标值的校正值; 第一灰度转换条件计算处理,用于基于再现目标值的校正值计算所获取的图像数据的灰度转换条件; 曝光条件指标计算处理,用于计算表示所拍摄图像数据的曝光条件的指标; 以及第二灰度转换条件计算处理,用于计算与表示曝光条件的指标对应的拍摄图像数据的灰度转换条件。
    • 95. 发明申请
    • EYE GAZE TRACKING APPARATUS, IMAGING APPARATUS, EYE GAZE TRACKING METHOD, PROGRAM, AND INTEGRATED CIRCUIT
    • 眼睛高度跟踪装置,成像装置,眼睛粗略跟踪方法,程序和集成电路
    • US20100204608A1
    • 2010-08-12
    • US12669644
    • 2009-05-20
    • Toshiyasu SugioDaisuke Sato
    • Toshiyasu SugioDaisuke Sato
    • A61B3/113
    • A61B3/113G06K9/00604
    • An eye gaze tracking apparatus (100) includes: an electro-oculogram measuring unit that outputs an electro-oculogram original signal; a calibration index presenting unit (103) that presents a calibration index to a user; a saccade detection unit (104) that outputs an electro-oculogram change amount that is an amount of change in an electro-oculogram before or after a saccadic movement which is measured when a gaze-path position of the user moves to the calibration index; a calibration parameter calculating unit (105) that calculates a calibration parameter based on a position of the calibration index and an electro-oculogram change amount; and a calibration unit (101) that detects the gaze-path direction of the user from the electro-oculogram original signal.
    • 眼睛注视跟踪装置(100)包括:电眼图测量单元,其输出电眼图原始信号; 向用户呈现校准索引的校准索引提示单元(103); 输出作为在使用者的注视路径位置移动到所述校准指标时测量的,在考察移动之前或之后的电眼图中的变化量的电眼图变化量的扫视检测单元(104) 校准参数计算单元,其基于所述校准指数的位置和电眼图变化量来计算校准参数; 以及校准单元(101),其从电眼图原始信号检测用户的注视路径方向。
    • 97. 发明申请
    • CATALYST DETERIORATION DETERMINATION DEVICE AND METHOD, AND ENGINE CONTROL UNIT
    • 催化剂测定装置和方法以及发动机控制单元
    • US20100031632A1
    • 2010-02-11
    • US12512614
    • 2009-07-30
    • Jun IIDADaisuke SatoHirofumi Hara
    • Jun IIDADaisuke SatoHirofumi Hara
    • F01N11/00
    • F01N3/0885F01N3/0842F01N3/0871
    • A catalyst deterioration determination device capable of determining whether or not fuel is high-sulfur fuel containing much sulfur content, and properly determining whether a catalyst is deteriorated while suppressing the frequency of execution of control for recovering the catalyst from the poisoned state to the minimum. The device determines whether or not a catalyst which purifies exhaust gases exhausted from an internal combustion engine is deteriorated based on the capacity of the catalyst for purifying exhaust gases. If it is determined that the catalyst is deteriorated, first sulfur elimination control is executed for eliminating sulfur content accumulated in the catalyst. Further, when the first sulfur elimination control is terminated, the deterioration determination of the catalyst is executed. Then, when it is determined by the deterioration determination that the catalyst is not deteriorated, it is determined that the fuel is high-sulfur fuel containing lots of sulfur content.
    • 一种催化剂劣化判定装置,其能够确定燃料是否含有大量硫含量的高硫燃料,并且适当确定催化剂是否劣化,同时将催化剂回收控制的执行次数从中毒状态抑制到最小。 该装置基于用于净化废气的催化剂的能力来确定净化从内燃机排出的废气的催化剂是否劣化。 如果确定催化剂劣化,则执行第一次硫消除控制以消除催化剂中累积的硫含量。 此外,当第一硫消除控制终止时,执行催化剂的劣化确定。 然后,当通过劣化测定确定催化剂不劣化时,确定燃料是含有大量硫含量的高硫燃料。
    • 99. 发明申请
    • Drawing Machine and Game Apparatus Using the Same
    • 绘图机和使用它的游戏装置
    • US20090264175A1
    • 2009-10-22
    • US12084327
    • 2006-10-27
    • Nobuhiro GotoKazuhiro KusudaYuichi NakaharaDaisuke SatoMonju Wada
    • Nobuhiro GotoKazuhiro KusudaYuichi NakaharaDaisuke SatoMonju Wada
    • A63F9/24
    • G07F17/32G07F17/323
    • The present invention provides a drawing machine and a game apparatus using the same by which participants of drawing can intervene in a process of drawing.A drawing machine for determining a winning-object from a plurality of drawing-objects includes: a winning-probability data storage unit for storing winning-probability data showing respective winning-probabilities of the plurality of drawing-objects; a drawing unit for carrying out drawings in accordance with the winning-probabilities of the respective drawing-objects determined by the winning-probability data stored in the winning-probability data storage unit and determining the winning-object from the plurality of drawing-objects; an operation unit operated by a participant of the drawing; a desired drawing-object determination unit for determining a desired drawing-object which the participant of drawing desires to win or not win, from the plurality of drawing-objects based on an operation of the operation unit; and a winning-probability data changing unit for changing the winning-probability data stored in the winning-probability data storage unit so that a winning-probability of the desired drawing-object determined by the desired drawing-object determination unit is changed.
    • 本发明提供一种拉丝机和使用该拉丝机的游戏装置,通过该装置,绘图参与者可以介入绘图过程。 用于从多个绘图对象确定获胜对象的绘图机包括:获胜概率数据存储单元,用于存储显示多个绘图对象的各个获胜概率的获胜概率数据; 绘制单元,用于根据存储在获胜概率数据存储单元中的获胜概率数据确定的各个绘图对象的获胜概率进行绘图,并从多个绘图对象中确定获胜对象; 由图纸参与者操作的操作单元; 基于操作单元的操作从所述多个绘图对象中确定所述绘图参与者想要赢得或不赢的期望绘图对象确定单元; 以及获胜概率数据改变单元,用于改变存储在获胜概率数据存储单元中的获胜概率数据,使得由期望的绘图对象确定单元确定的期望绘图对象的获胜概率改变。