INFORMATION PROCESSING DEVICE, INFORMATION PROCESSING METHOD, AND PROGRAM

    公开(公告)号:US20190339059A1

    公开(公告)日:2019-11-07

    申请号:US16510941

    申请日:2019-07-14

    Inventor: Tomonori MASUDA

    Abstract: An execution unit executes a derivation process of deriving an imaging position distance, on the basis of a plurality of pixel coordinates which are present in the same planar region as an irradiation position where the directional light is emitted on the real space and which are equal to or more than three pixels specifiable at positions corresponding to each other in respective first and second captured images, irradiation position real space coordinates, a focal length, and dimensions of imaging pixels, in a case where the position of a pixel specified by the irradiation position pixel coordinates is the position of a pixel different from a pixel which is specifiable at positions corresponding to each other in the respective first and second captured images.

    IMAGE OUTPUT DEVICE, METHOD, AND RECORDING MEDIUM THEREFOR
    14.
    发明申请
    IMAGE OUTPUT DEVICE, METHOD, AND RECORDING MEDIUM THEREFOR 有权
    图像输出装置,方法和记录介质

    公开(公告)号:US20140293006A1

    公开(公告)日:2014-10-02

    申请号:US14306484

    申请日:2014-06-17

    Inventor: Tomonori MASUDA

    Abstract: An image output device comprising: a representative parallax acquisition unit; a provisional output parallax determination unit to determine a provisional output parallax for each of the stereoscopic image frames depending on an output condition of the stereoscopic video, based on the representative parallax for each of the stereoscopic image frames; an output parallax adjustment unit; and an output unit, wherein the provisional output parallax determination unit determines the provisional output parallax for a reference frame corresponding to the representative parallax for the reference frame, and determines the provisional output parallax for a target frame corresponding to the representative parallax for the target frame, in accordance with the provisional output parallax defined for each range of the representative parallax for the stereoscopic image frame, the reference frame being sequentially determined from the stereoscopic image frames, and the target frame being the stereoscopic image frame immediately after the reference frame.

    Abstract translation: 一种图像输出装置,包括:代表性视差获取单元; 临时输出视差确定单元,用于根据立体视频的输出条件,基于每个立体图像帧的代表性视差来确定每个立体图像帧的临时输出视差; 输出视差调整单元; 以及输出单元,其中所述临时输出视差确定单元对于与所述参考帧的所述代表性视差相对应的参考帧确定所述临时输出视差,并且为所述目标帧确定与所述代表性视差对应的目标帧的临时输出视差 根据针对立体图像帧的代表性视差的每个范围定义的临时输出视差,从立体图像帧顺序确定参考帧,并且目标帧是紧接在参考帧之后的立体图像帧。

    IMAGE PROCESSING DEVICE, METHOD, AND RECORDING MEDIUM THEREFOR
    15.
    发明申请
    IMAGE PROCESSING DEVICE, METHOD, AND RECORDING MEDIUM THEREFOR 有权
    图像处理装置,方法和记录介质

    公开(公告)号:US20140247327A1

    公开(公告)日:2014-09-04

    申请号:US14280138

    申请日:2014-05-16

    Inventor: Tomonori MASUDA

    Abstract: An image processing device comprising a representative parallax acquisition unit, a scene separation unit to separate the stereoscopic video into multiple scenes when a parallax width does not comply with an allowable parallax width, a parallax adjustment unit to decide whether a scene parallax width complies with the allowable parallax width, and uniformly adjust the representative parallaxes for the respective stereoscopic image frames constituting the scene such that the scene parallax width complies with the allowable parallax width, the scene parallax width being defined by a maximum value and a minimum value of the representative parallaxes for the respective stereoscopic image frames constituting the scene, and an output unit, wherein the representative parallaxes for the respective stereoscopic image frames include a statistical operation value to be calculated based on parallaxes that, of parallaxes for the stereoscopic image frames, meet a predetermined condition.

    Abstract translation: 一种图像处理装置,包括代表性视差获取单元,当视差宽度不符合允许视差宽度时将立体视觉分离为多个场景的场景分离单元;视差调整单元,用于判定场景视差宽度是否符合 并且对构成场景的各立体图像帧进行统一调整,使得场景视差宽度符合允许视差宽度,场景视差宽度由代表视差的最大值和最小值定义 对于构成场景的各个立体图像帧和输出单元,其中,各个立体图像帧的代表性视差包括基于视差的计算的统计运算值,立体图像帧的视差满足预定条件 。

    IMAGE OUTPUT DEVICE, METHOD AND PROGRAM
    16.
    发明申请
    IMAGE OUTPUT DEVICE, METHOD AND PROGRAM 失效
    图像输出设备,方法和程序

    公开(公告)号:US20130093848A1

    公开(公告)日:2013-04-18

    申请号:US13707200

    申请日:2012-12-06

    Inventor: Tomonori MASUDA

    CPC classification number: H04N13/189 H04N13/106 H04N13/128 H04N13/239

    Abstract: The transition of representative parallax of a stereoscopic moving image is reflected in a parallax adjustment according to output conditions of the stereoscopic moving image. A parallax adjustment unit determines whether to satisfy |representative parallax of a reference frame-representative parallax of a target frame|

    Abstract translation: 立体运动图像的代表性视差的转变根据立体运动图像的输出条件反映在视差调整中。 视差调整单元确定是否满足目标帧|α的参考帧代表视差的代表性视差。 如果是,则处理进入S5,否则,处理进入S6。 这里,a从阈值设定单元输入作为移动允许阈值。 例如a等于0.75。 当确定为否时,这意味着帧之间的代表性视差的波动在一定程度上是大的。 在这种情况下,处理进行到S6,并且执行用于将目标帧移位以输出与参考帧不同的视差的处理。

    INFORMATION PROCESSING DEVICE, IMAGING DEVICE, INFORMATION PROCESSING METHOD, AND PROGRAM

    公开(公告)号:US20250008216A1

    公开(公告)日:2025-01-02

    申请号:US18882547

    申请日:2024-09-11

    Abstract: A processor measures a first distance to an object in a distance measurement target region on the basis of an irradiation timing when a light irradiator performs surface irradiation on the distance measurement target region with light and a light receiving timing when a light receiver receives reflected light of the light from distance measurement target region. In a case in which a specific pixel included in the light receiver generates a plurality of signals at different timings within a light receiving period corresponding to the surface irradiation by the light irradiator, the processor measures the first distance on the basis of a relationship between the plurality of signals.

    PROCESSING APPARATUS, ELECTRONIC APPARATUS, PROCESSING METHOD, AND PROGRAM

    公开(公告)号:US20240418862A1

    公开(公告)日:2024-12-19

    申请号:US18819136

    申请日:2024-08-29

    Abstract: A processing apparatus includes a control unit that performs a control of performing an imaging operation by an imaging unit that images an imaging region, and a distance measurement operation in which a distance measurement unit performs distance measurement by emitting light to the imaging region and receiving reflected light of the light from the imaging region, an acquisition unit that acquires reflectivity information for specifying a reflectivity in the imaging region, and a change unit that changes irradiation energy of the light according to the reflectivity information acquired by the acquisition unit in a state in which the imaging operation and the distance measurement operation are performed.

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