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    • 1. 发明申请
    • IMAGE CAPTURING APPARATUS AND IMAGE CAPTURING METHOD
    • 图像捕获设备和图像捕获方法
    • US20100118163A1
    • 2010-05-13
    • US12691072
    • 2010-01-21
    • Masakazu MatsuguKatsuhiko MoriYuji KanedaTadashi Hayashi
    • Masakazu MatsuguKatsuhiko MoriYuji KanedaTadashi Hayashi
    • H04N5/76
    • G06K9/00248G03B17/16G06K9/00315G06T7/97H04N5/232H04N5/23219H04N5/23222H04N5/772H04N2101/00
    • In an image capturing apparatus, a video input unit (2) captures the image of an object and sequentially acquires image data associated with the image capturing, a model data memory (6) stores model data associated with the first feature quantity calculated from a feature point of the object in a model image, a principal object detection unit (3) calculates the second feature quantity from a feature point of the object in the acquired image data, a state change estimation unit (4) estimates, on the basis of the second feature quantity and the model data, the timing when the object satisfies a predetermined condition, and an image input processing control unit (7) stores the image data corresponding to the estimated timing in an image recording unit (5). This configuration makes the image capturing apparatus acquire an image in a more proper state without large-capacity memory.
    • 在图像捕获装置中,视频输入单元(2)捕获对象的图像并顺序获取与图像拍摄相关联的图像数据,模型数据存储器(6)存储与从特征计算出的第一特征量相关联的模型数据 主体对象检测单元(3)根据所获取的图像数据中的对象的特征点计算第二特征量,状态变化估计单元(4)基于所获取的图像数据 第二特征量和模型数据,对象满足预定条件的定时,图像输入处理控制单元(7)将与估计的定时对应的图像数据存储在图像记录单元(5)中。 该配置使得图像捕获装置在没有大容量存储器的情况下获得更适当状态的图像。
    • 2. 发明申请
    • IMAGE CAPTURING APPARATUS AND IMAGE CAPTURING METHOD
    • 图像捕获设备和图像捕获方法
    • US20070025722A1
    • 2007-02-01
    • US11459112
    • 2006-07-21
    • Masakazu MatsuguKatsuhiko MoriYuji KanedaTadashi Hayashi
    • Masakazu MatsuguKatsuhiko MoriYuji KanedaTadashi Hayashi
    • G03B17/00
    • G06K9/00248G03B17/16G06K9/00315G06T7/97H04N5/232H04N5/23219H04N5/23222H04N5/772H04N2101/00
    • In an image capturing apparatus, a video input unit (2) captures the image of an object and sequentially acquires image data associated with the image capturing, a model data memory (6) stores model data associated with the first feature quantity calculated from a feature point of the object in a model image, a principal object detection unit (3) calculates the second feature quantity from a feature point of the object in the acquired image data, a state change estimation unit (4) estimates, on the basis of the second feature quantity and the model data, the timing when the object satisfies a predetermined condition, and an image input processing control unit (7) stores the image data corresponding to the estimated timing in an image recording unit (5). This configuration makes the image capturing apparatus acquire an image in a more proper state without large-capacity memory.
    • 在图像捕获装置中,视频输入单元(2)捕获对象的图像并顺序获取与图像拍摄相关联的图像数据,模型数据存储器(6)存储与从特征计算出的第一特征量相关联的模型数据 主体对象检测单元(3)根据所获取的图像数据中的对象的特征点计算第二特征量,状态变化估计单元(4)基于所获取的图像数据 第二特征量和模型数据,对象满足预定条件的定时,图像输入处理控制单元(7)将与估计的定时对应的图像数据存储在图像记录单元(5)中。 该配置使得图像捕获装置在没有大容量存储器的情况下获得更适当状态的图像。
    • 3. 发明授权
    • Image capturing apparatus and image capturing method
    • 图像捕获装置和图像捕获方法
    • US08180106B2
    • 2012-05-15
    • US12691072
    • 2010-01-21
    • Masakazu MatsuguKatsuhiko MoriYuji KanedaTadashi Hayashi
    • Masakazu MatsuguKatsuhiko MoriYuji KanedaTadashi Hayashi
    • G06K9/00
    • G06K9/00248G03B17/16G06K9/00315G06T7/97H04N5/232H04N5/23219H04N5/23222H04N5/772H04N2101/00
    • In an image capturing apparatus, a video input unit (2) captures the image of an object and sequentially acquires image data associated with the image capturing, a model data memory (6) stores model data associated with the first feature quantity calculated from a feature point of the object in a model image, a principal object detection unit (3) calculates the second feature quantity from a feature point of the object in the acquired image data, a state change estimation unit (4) estimates, on the basis of the second feature quantity and the model data, the timing when the object satisfies a predetermined condition, and an image input processing control unit (7) stores the image data corresponding to the estimated timing in an image recording unit (5). This configuration makes the image capturing apparatus acquire an image in a more proper state without large-capacity memory.
    • 在图像捕获装置中,视频输入单元(2)捕获对象的图像并顺序获取与图像拍摄相关联的图像数据,模型数据存储器(6)存储与从特征计算出的第一特征量相关联的模型数据 主体对象检测单元(3)根据所获取的图像数据中的对象的特征点计算第二特征量,状态变化估计单元(4)基于所获取的图像数据 第二特征量和模型数据,对象满足预定条件的定时,图像输入处理控制单元(7)将与估计的定时对应的图像数据存储在图像记录单元(5)中。 该配置使得图像捕获装置在没有大容量存储器的情况下获得更适当状态的图像。
    • 4. 发明授权
    • Image capturing apparatus and image capturing method
    • 图像捕获装置和图像捕获方法
    • US07889886B2
    • 2011-02-15
    • US11459112
    • 2006-07-21
    • Masakazu MatsuguKatsuhiko MoriYuji KanedaTadashi Hayashi
    • Masakazu MatsuguKatsuhiko MoriYuji KanedaTadashi Hayashi
    • G06K9/00H04N7/18
    • G06K9/00248G03B17/16G06K9/00315G06T7/97H04N5/232H04N5/23219H04N5/23222H04N5/772H04N2101/00
    • In an image capturing apparatus, a video input unit (2) captures the image of an object and sequentially acquires image data associated with the image capturing, a model data memory (6) stores model data associated with the first feature quantity calculated from a feature point of the object in a model image, a principal object detection unit (3) calculates the second feature quantity from a feature point of the object in the acquired image data, a state change estimation unit (4) estimates, on the basis of the second feature quantity and the model data, the timing when the object satisfies a predetermined condition, and an image input processing control unit (7) stores the image data corresponding to the estimated timing in an image recording unit (5). This configuration makes the image capturing apparatus acquire an image in a more proper state without large-capacity memory.
    • 在图像捕获装置中,视频输入单元(2)捕获对象的图像并顺序获取与图像拍摄相关联的图像数据,模型数据存储器(6)存储与从特征计算出的第一特征量相关联的模型数据 主体对象检测单元(3)根据所获取的图像数据中的对象的特征点计算第二特征量,状态变化估计单元(4)基于所获取的图像数据 第二特征量和模型数据,对象满足预定条件的定时,图像输入处理控制单元(7)将与估计的定时对应的图像数据存储在图像记录单元(5)中。 该配置使得图像捕获装置在没有大容量存储器的情况下获得更适当状态的图像。
    • 5. 发明授权
    • Automatic-tracking camera apparatus
    • 自动跟踪摄像机
    • US09491359B2
    • 2016-11-08
    • US13439961
    • 2012-04-05
    • Tadashi Hayashi
    • Tadashi Hayashi
    • H04N5/225H04N5/232H04N13/02G01C11/02
    • H04N5/23248G01C11/02H04N5/232H04N5/23203H04N5/23219H04N5/23264H04N5/23296H04N13/221
    • An automatic-tracking camera apparatus which is capable of realizing continuous and smooth driving and obtaining an image with little position variation of a tracking target from a target position within the image and with little blur. The position of a camera body is changed by a gimbal device. The speed of a tracking target object at the next-after-next start timing of image acquisition by the camera body is predicted. The gimbal device is controlled so that the camera body reaches the position indicated by a position instruction value generated for the next-after-next start timing of image acquisition by the camera body, at the next-after-next start timing, and the speed of the camera body at the next-after-next start timing of image acquisition by the camera body corresponds to the speed predicted for the next-after-next timing of image acquisition.
    • 一种自动追踪相机装置,其能够实现连续而平稳的驾驶,并且从图像中的目标位置几乎没有模糊地获得跟踪目标的位置变化小的图像。 相机机身的位置由万向节装置改变。 预测在相机机身的图像采集的下一个下一个开始定时处的跟踪目标对象的速度。 控制万向节装置,使得相机机身到达由相机机身在下一个接下来的开始时刻的图像采集的下一个下一个开始定时产生的位置指令值所指示的位置,并且速度 在摄像机主体的图像采集的下一个接下来的开始定时的相机机身对应于对下一个下一个图像采集定时预测的速度。
    • 10. 发明授权
    • X-ray tubes
    • X光管
    • US4344011A
    • 1982-08-10
    • US093268
    • 1979-11-13
    • Tadashi HayashiSetsuo Nomura
    • Tadashi HayashiSetsuo Nomura
    • H01J35/14H01J35/06H01J35/00H01J29/46
    • H01J35/06H01J2235/068
    • In an X-ray tube comprising a cathode electrode including a filament for emitting electrons and a focusing electrode having a focusing groove adapted to contain the filament, and an anode electrode opposing the cathode electrode and maintained at a high potential which is positive relative to the filament, an electron emitting region of the filament facing the anode electrode is formed as a substantially flat surface, and the filament, the focusing electrode and the anode electrode are arranged such that a portion of the anode electrode upon which electron collide will be positioned in a focal plane of a cathode lens formed by the filament, the focusing electrode and the anode electrode.
    • 在包括具有用于发射电子的灯丝的阴极的X射线管和具有适于容纳灯丝的聚光槽的聚焦电极以及与阴极相对的并且保持在相对于阴极的阳极的高电位的聚焦电极 灯丝的面向阳极电极的电子发射区形成为大致平坦的表面,并且灯丝,聚焦电极和阳极电极被布置成使得电子碰撞的阳极电极的一部分将位于 由灯丝,聚焦电极和阳极电极形成的阴极透镜的焦平面。