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    • 11. 发明授权
    • Focus adjustment device, imaging device and focus adjustment method
    • 对焦调整装置,成像装置和对焦调整方法
    • US07932951B2
    • 2011-04-26
    • US11939778
    • 2007-11-14
    • Masaaki Toguchi
    • Masaaki Toguchi
    • H04N5/232
    • H04N5/23212
    • A video camera constructed according to one aspect of the focus adjustment device moves a focus lens forward and backward and detects peak values of an AF evaluation value of the focus lens in the forward moving direction and in the backward moving direction. The video camera calculates a correction value based on a difference between the peak value of the evaluation value detected in the forward motion of the lens and the peak value of the evaluation value detected in the backward motion of the lens. The video camera corrects the AF evaluation value with the calculated correction value and detects a focused position of the lens based on the corrected AF evaluation value in moving the lens.
    • 根据焦点调节装置的一个方面构造的视频摄像机向前和向后移动聚焦透镜,并且检测聚焦透镜在向前移动方向和向后移动方向上的AF评估值的峰值。 视频摄像机基于透镜的向前运动中检测到的评估值的峰值与在透镜的向后运动中检测到的评价值的峰值之间的差异来计算校正值。 视频摄像机用计算出的校正值校正AF评估值,并且在移动透镜时基于校正的AF评估值检测透镜的聚焦位置。
    • 12. 发明申请
    • CAMERA SYSTEM
    • 相机系统
    • US20090244327A1
    • 2009-10-01
    • US12410621
    • 2009-03-25
    • Masaaki Toguchi
    • Masaaki Toguchi
    • H04N5/262
    • H04N5/2628H04N5/2353
    • A camera system includes a camera, a shooting field shifting mechanism, a shift amount acquiring unit, and a masking processor that masks a masking target within a captured image flame. The masking processor includes first and second position computing units, and mask area establishing unit. The first and second position computing units compute, based on the shift settings of the shooting field shifting mechanism, first and second relative positions of the masking target relative to the shooting field. The mask area establishing unit establishes a mask area to mask the masking target on the captured image flame, based on the first and second relative positions.
    • 相机系统包括照相机,拍摄场移动机构,移位量获取单元和掩蔽捕获图像火焰内的掩蔽目标的掩蔽处理器。 掩蔽处理器包括第一和第二位置计算单元以及掩模区域建立单元。 第一和第二位置计算单元基于拍摄场移动机构的偏移设置,计算掩蔽目标相对于拍摄场的第一和第二相对位置。 掩模区域建立单元基于第一和第二相对位置建立掩蔽区域以掩蔽捕获图像火焰上的掩蔽目标。
    • 13. 发明授权
    • Imaging device and control method thereof
    • 成像装置及其控制方法
    • US08582964B2
    • 2013-11-12
    • US13548545
    • 2012-07-13
    • Masaaki ToguchiTetsuya Horike
    • Masaaki ToguchiTetsuya Horike
    • G03B17/00
    • G03B13/36G03B3/10G03B2205/0046
    • An imaging device moves a zoom lens, so as to change the magnification of an image of a subject, and obtains a near limit position of a focusing lens to the subject at a zoom lens position. When a target position of the focusing lens, which is required to keep the image in focus after the zoom lens is moved, is located on a near side, i.e., on an imaging plane side, of a threshold position determined based on the obtained near limit position, focus control is performed to move the focusing lens and thereby focus. When the target position of the focusing lens is not located on the near side but is located on a subject side of the threshold position, on the other hand, focus control is performed to move the zoom lens to a wider position and subsequently move the focusing lens to focus the image.
    • 成像装置移动变焦镜头,以便改变被摄体的图像的放大倍率,并且在变焦镜头位置处获得聚焦透镜对被摄体的近极限位置。 当在变焦镜头移动之后保持图像聚焦所需的聚焦透镜的目标位置位于基于所获得的近似值确定的阈值位置的近侧即成像平面侧 执行聚焦控制以移动聚焦透镜并由此聚焦。 另一方面,当聚焦透镜的目标位置不位于近侧但位于阈值位置的被摄体侧时,执行聚焦控制以将变焦透镜移动到更宽的位置,并且随后移动聚焦 镜头聚焦图像。
    • 14. 发明申请
    • IMAGING DEVICE AND CONTROL METHOD THEREOF
    • 成像装置及其控制方法
    • US20130022342A1
    • 2013-01-24
    • US13548545
    • 2012-07-13
    • Masaaki ToguchiTetsuya Horike
    • Masaaki ToguchiTetsuya Horike
    • G03B3/00
    • G03B13/36G03B3/10G03B2205/0046
    • An imaging device moves a zoom lens, so as to change the magnification of an image of a subject, and obtains a near limit position of a focusing lens to the subject at a zoom lens position. When a target position of the focusing lens, which is required to keep the image in focus after the zoom lens is moved, is located on a near side, i.e., on an imaging plane side, of a threshold position determined based on the obtained near limit position, focus control is performed to move the focusing lens and thereby focus. When the target position of the focusing lens is not located on the near side but is located on a subject side of the threshold position, on the other hand, focus control is performed to move the zoom lens to a wider position and subsequently move the focusing lens to focus the image.
    • 成像装置移动变焦镜头,以便改变被摄体的图像的放大倍率,并且在变焦镜头位置处获得聚焦透镜对被摄体的近极限位置。 当在变焦镜头移动之后保持图像聚焦所需的聚焦透镜的目标位置位于基于所获得的近似值确定的阈值位置的近侧即成像平面侧 执行聚焦控制以移动聚焦透镜并由此聚焦。 另一方面,当聚焦透镜的目标位置不位于近侧但位于阈值位置的被摄体侧时,执行聚焦控制以将变焦透镜移动到更宽的位置,并且随后移动聚焦 镜头聚焦图像。
    • 15. 发明授权
    • Imaging device and autofocusing method
    • 成像装置和自动对焦方法
    • US07884877B2
    • 2011-02-08
    • US11946187
    • 2007-11-28
    • Masaaki Toguchi
    • Masaaki Toguchi
    • G03B13/00
    • H04N5/23212G02B7/023G02B7/102G02B7/282G03B13/36
    • In an imaging device according to one aspect of the invention, an amplitude demand Ac is specified according to a wobbling amplitude Ai required for detection of a hill-climbing direction based on an F value and a wobbling amplitude Ag required for detection of the hill-climbing direction based on an AGC gain. An allowable amplitude Am set for preventing a potential image shake caused by a magnification change with a position shift of a compensator lens in wobbling is specified corresponding to a zoom position and an object distance. When Ac>Am, the control procedure restricts the wobbling amplitude to Am and increases a sampling number of AF evaluation values to be detected at respective positions in wobbling, in order to ensure the sufficient detection performance of the hill-climbing direction. When Ac□Am on the other hand, the control procedure sets Ac to the wobbling amplitude. This arrangement of the imaging device efficiently ensures the sufficient detection performance of the hill-climbing direction for autofocusing control, while effectively preventing deterioration of the quality of a captured image due to the magnification change in the wobbling motion.
    • 在根据本发明的一个方面的成像装置中,根据用于检测爬坡方向所需的摆动幅度Ai,根据检测爬坡方向的F值和摆动振幅Ag来确定振幅要求Ac, 基于AGC增益的攀爬方向。 对应于变焦位置和对象距离来指定用于防止由于摆动中的补偿透镜的位置偏移而产生的放大率变化引起的潜在图像抖动的容许振幅Am。 当Ac> Am时,控制程序将摆动幅度限制为Am,并且增加在摆动中的各个位置处要检测的AF评估值的采样数,以确保爬坡方向的足够的检测性能。 另一方面,当Ac□Am时,控制程序将Ac设置为摆动振幅。 成像装置的这种布置有效地确保了用于自动对焦控制的爬坡方向的足够的检测性能,同时有效地防止由于摆动运动的放大变化而导致的拍摄图像的质量的劣化。
    • 16. 发明申请
    • IMAGING DEVICE AND AUTOFOCUSING METHOD
    • 成像装置和自动对焦方法
    • US20080165274A1
    • 2008-07-10
    • US11946187
    • 2007-11-28
    • Masaaki Toguchi
    • Masaaki Toguchi
    • H04N5/232
    • H04N5/23212G02B7/023G02B7/102G02B7/282G03B13/36
    • In an imaging device according to one aspect of the invention, an amplitude demand Ac is specified according to a wobbling amplitude Ai required for detection of a hill-climbing direction based on an F value and a wobbling amplitude Ag required for detection of the hill-climbing direction based on an AGC gain. An allowable amplitude Am set for preventing a potential image shake caused by a magnification change with a position shift of a compensator lens in wobbling is specified corresponding to a zoom position and an object distance. When Ac>Am, the control procedure restricts the wobbling amplitude to Am and increases a sampling number of AF evaluation values to be detected at respective positions in wobbling, in order to ensure the sufficient detection performance of the hill-climbing direction. When Ac□Am on the other hand, the control procedure sets Ac to the wobbling amplitude. This arrangement of the imaging device efficiently ensures the sufficient detection performance of the hill-climbing direction for autofocusing control, while effectively preventing deterioration of the quality of a captured image due to the magnification change in the wobbling motion.
    • 在根据本发明的一个方面的成像装置中,根据用于检测爬坡方向所需的摆动幅度Ai,根据检测爬坡方向的F值和摆动振幅Ag来确定振幅要求Ac, 基于AGC增益的攀爬方向。 对应于变焦位置和对象距离来指定用于防止由于摆动中的补偿透镜的位置偏移而产生的放大率变化引起的潜在图像抖动的容许振幅Am。 当Ac> Am时,控制程序将摆动幅度限制为Am,并且增加在摆动中的各个位置处要检测的AF评估值的采样数,以确保爬坡方向的足够的检测性能。 另一方面,当Ac□Am时,控制程序将Ac设置为摆动振幅。 成像装置的这种布置有效地确保了用于自动对焦控制的爬坡方向的足够的检测性能,同时有效地防止由于摆动运动的放大变化而导致的拍摄图像的质量的劣化。