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    • 2. 发明授权
    • Television camera equipped with continuously-variable-speed electronic
shutter function
    • 电视摄像机配有连续变速电子快门功能
    • US5448293A
    • 1995-09-05
    • US266334
    • 1994-07-01
    • Haruo KoganeHidetoshi Mimura
    • Haruo KoganeHidetoshi Mimura
    • H04N5/225H04N5/235H04N5/335H04N5/351H04N5/353H04N5/357H04N5/372H04N5/378
    • H04N5/2352
    • A television camera equipped with a continuously-variable-speed electronic shutter function which can control the charge-storing time of a solid-state image sensor and an amplifier so that a video signal follows the optimum light amount for a subject at high speed and with high accuracy. A shutter-equipped image sensor which is controlled by a shutter pulse generating unit, converts light incident on an optical lens into an electric signal. The electric signal, after being passed through an amplifier and a signal processing unit, is detected by a video level detecting unit as a video level. A shutter control unit holds the shutter amount corresponding to the video level for each field to immediately calculate an estimated shutter amount by using a predetermined equation, and supplies the calculated shutter amount to the shutter pulse generating unit for each field. A control mode decision unit exclusively controls a gain control unit serving as an AGC and the shutter control unit.
    • 一种具有连续变速电子快门功能的电视摄像机,其可以控制固态图像传感器和放大器的电荷存储时间,使得视频信号以高速度跟随对象的最佳光量,并且与 高准确率。 由快门脉冲发生单元控制的具有快门的图像传感器将入射到光学透镜上的光转换为电信号。 电信号在通过放大器和信号处理单元之后,被视频电平检测单元检测为视频电平。 快门控制单元保持对应于每个场的视频电平的快门量,以通过使用预定方程式立即计算估计的快门量,并将所计算的快门量提供给每个场的快门脉冲生成单元。 控制模式决定单元专门控制用作AGC的增益控制单元和快门控制单元。
    • 3. 发明申请
    • MONITORING CAMERA DEVICE
    • 监控摄像机
    • US20090251543A1
    • 2009-10-08
    • US11573459
    • 2005-07-29
    • Haruo KoganeYasuji Nakamura
    • Haruo KoganeYasuji Nakamura
    • H04N7/18
    • H04N7/188G08B13/1654G08B13/196
    • In a camera 12, a sound input unit inputs a monitoring sound obtained from a monitoring place, and an image generation unit generates a monitoring image obtained from the monitoring place. A sound anomaly detection unit then detects a sound anomaly in the monitoring place based on the monitoring sound, and an image anomaly detection unit detects an image anomaly in the monitoring place based on the monitoring image. A comprehensive anomaly judgment unit comprehensively judges whether or not there is an anomaly based on detection results of the sound anomaly detection unit and the image anomaly detection unit. When the comprehensive anomaly judgment unit judges that there is an anomaly, an anomaly notification unit notifies a controller 14 of the anomaly. An anomaly can be reliably detected by the comprehensive anomaly judgment.
    • 在相机12中,声音输入单元输入从监视场所获得的监视声音,图像生成单元生成从监视位置获得的监视图像。 声音异常检测单元然后基于监视声音来检测监视场所的声音异常,并且图像异常检测单元基于监视图像来检测监视位置中的图像异常。 全面的异常判断部基于声音异常检测部和图像异常检测部的检测结果来综合判断是否存在异常。 当综合异常判断单元判断有异常时,异常通知单元向控制器14通知该异常。 综合异常判断可以可靠地检测出异常情况。
    • 4. 发明申请
    • Monitor Camera Device, Control Method for Monitor Camera Device, and Program for Monitor Camera Device
    • 监控相机设备,监控摄像机设备的控制方法和监视摄像机设备的程序
    • US20080284862A1
    • 2008-11-20
    • US11570971
    • 2005-07-06
    • Haruo KoganeYasuji Nakamura
    • Haruo KoganeYasuji Nakamura
    • H04N5/232
    • H04N5/23203H04N5/23206H04N7/185
    • A camera (16) and a rotary base receiver (28) are connected to each other to be capable of transmitting a video signal. In the camera (16), a web server (50) sends out a video signal to the outside and receives a camera remote control signal and a rotary base remote control signal from the outside. A control unit (40) controls the camera (16) according to the camera remote control signal. The rotary base remote control signal is superimposed on a video signal to be transmitted to the rotary base receiver (28) by a video signal circuit (52). The rotary base receiver (28) extracts the rotary base remote control signal from the video signal, and controls a rotary base (14) according to the rotary base remote control signal. The configuration for a superimposed transmission can be utilized and both the camera and the rotary base can be controlled with ease through communications with the outside.
    • 相机(16)和旋转底座接收器(28)彼此连接以能够发送视频信号。 在相机(16)中,网络服务器(50)向外部发送视频信号,并从外部接收摄像机遥控信号和旋转基座遥控信号。 控制单元(40)根据照相机遥控信号控制照相机(16)。 旋转基座遥控信号被叠加在视频信号上,由视频信号电路(52)发送到旋转基座接收器(28)。 旋转底座接收器(28)从视频信号中提取旋转基座遥控信号,并根据旋转基座遥控信号控制旋转座(14)。 可以利用叠加传输的配置,并且通过与外部通信可以容易地控制照相机和旋转底座。
    • 5. 发明授权
    • Network surveillance video camera system
    • 网络监控摄像机系统
    • US07028328B2
    • 2006-04-11
    • US09933679
    • 2001-08-22
    • Haruo KoganeManabu NakamuraMamoru Higashimura
    • Haruo KoganeManabu NakamuraMamoru Higashimura
    • H04N7/173
    • G08B13/19667G08B13/19634G08B13/19656G08B13/19663G08B13/19671G08B13/19673G08B13/19691G08B13/19697H04N7/181
    • Monitor camera units, a data storing unit, a control server, and a monitor display are coupled by a network. The monitor camera unit includes a motion detector for detecting motion from video data, a microphone, a traffic monitor, a memory for storing the video data, and a sensor signal input circuit. The traffic monitor monitors the traffic of the network. If the traffic is high, only necessary data or sound data is transmitted. The memory stores the video data in response to the motion detector and a thinning circuit thins the video data from the memory in response to a sensor signal. The control server receives the alarm data from the monitor camera and further receives the alarm type data, time data, position data of a pivoting unit for pivoting the camera unit and transmits the data to the display terminal. In the presence of a loud sound, alarm data is also generated but it is not sent if a switch is OFF. The control server includes a data base storing set of alarm data. If an operator judges one set of alarm data is an error, the set of data is not erased but mark data is correspondingly stored to inhibit searching the set of data. During the night, the exposure and transmitting intervals are increased to prevent the same data from being transmitted twice.
    • 监视摄像机单元,数据存储单元,控制服务器和监视器显示器通过网络耦合。 监视摄像机单元包括用于检测来自视频数据的运动的运动检测器,麦克风,话务监视器,用于存储视频数据的存储器以及传感器信号输入电路。 流量监控器监控网络流量。 如果流量较大,则仅传送必要的数据或声音数据。 存储器响应于运动检测器存储视频数据,并且稀疏电路响应于传感器信号使来自存储器的视频数据变薄。 控制服务器从监视摄像机接收报警数据,并进一步接收报警类型数据,时间数据,枢轴转动单元的位置数据,并将数据发送到显示终端。 在有大声的情况下,也会产生报警数据,但如果开关为OFF,则不会发送报警数据。 控制服务器包括存储一组报警数据的数据库。 如果操作员判断一组报警数据是错误的,则该数据组不被擦除,而相应地存储标记数据以禁止搜索该组数据。 在夜间,曝光和发送间隔增加,以防止相同的数据被传送两次。
    • 6. 发明授权
    • Monitoring camera device
    • 监控相机设备
    • US08330813B2
    • 2012-12-11
    • US11573459
    • 2005-07-29
    • Haruo KoganeYasuji Nakamura
    • Haruo KoganeYasuji Nakamura
    • H04N7/18H04N7/52
    • H04N7/188G08B13/1654G08B13/196
    • In a camera 12, a sound input unit inputs a monitoring sound obtained from a monitoring place, and an image generation unit generates a monitoring image obtained from the monitoring place. A sound anomaly detection unit then detects a sound anomaly in the monitoring place based on the monitoring sound, and an image anomaly detection unit detects an image anomaly in the monitoring place based on the monitoring image. A comprehensive anomaly judgment unit comprehensively judges whether or not there is an anomaly based on detection results of the sound anomaly detection unit and the image anomaly detection unit. When the comprehensive anomaly judgment unit judges that there is an anomaly, an anomaly notification unit notifies a controller 14 of the anomaly. An anomaly can be reliably detected by the comprehensive anomaly judgment.
    • 在相机12中,声音输入单元输入从监视场所获得的监视声音,图像生成单元生成从监视位置获得的监视图像。 声音异常检测单元然后基于监视声音来检测监视场所的声音异常,并且图像异常检测单元基于监视图像来检测监视位置中的图像异常。 全面的异常判断部基于声音异常检测部和图像异常检测部的检测结果来综合判断是否存在异常。 当综合异常判断单元判断有异常时,异常通知单元向控制器14通知该异常。 综合异常判断可以可靠地检测出异常情况。
    • 7. 发明申请
    • ENDOSCOPE DEVICE, CAMERA DEVICE FOR ENDOSCOPE, AND DEFOGGING METHOD
    • 内窥镜装置,用于内窥镜的相机装置和缺陷方法
    • US20110211052A1
    • 2011-09-01
    • US12673270
    • 2008-09-04
    • Haruo Kogane
    • Haruo Kogane
    • H04N7/18
    • A61B1/127A61B1/042
    • An endoscope apparatus (1) includes a rigid scope portion (2) having an imaging window (5) at a front end thereof; a camera unit portion (3) mounted to a root end of the rigid scope portion (2); and a vibration generating device (4) mounted to the camera unit portion (3). The camera unit portion (3) can obtain an image of the inside of a body cavity through the imaging window (5). The vibration generating device (4) provides vibration to the rigid scope portion (2) through the camera unit portion (3) to defog the imaging window (5). This can provide an endoscope apparatus that can reduce the cost and size of a scope portion and has a high defogging effect.
    • 一种内窥镜装置(1),具有在其前端具有成像窗(5)的刚性镜部(2) 安装到所述刚性示波器部分(2)的根端的相机单元部分(3); 和安装在相机单元部分(3)上的振动产生装置(4)。 相机单元部分(3)可以通过成像窗口(5)获得体腔内部的图像。 振动产生装置(4)通过照相机单元部分(3)向刚性示波器部分(2)提供振动以除雾成像窗口(5)。 这可以提供能够降低作用部的成本和尺寸并具有高防雾效果的内窥镜装置。
    • 8. 发明授权
    • Monitor camera device, control method for monitor camera device, and program for monitor camera device
    • 监控摄像机设备,监控摄像机设备的控制方法以及监控摄像机设备的程序
    • US07532237B2
    • 2009-05-12
    • US11570971
    • 2005-07-06
    • Haruo KoganeYasuji Nakamura
    • Haruo KoganeYasuji Nakamura
    • H04N5/225H04N5/232
    • H04N5/23203H04N5/23206H04N7/185
    • A camera (16) and a rotary base receiver (28) are connected to each other to be capable of transmitting a video signal. In the camera (16), a web server (50) sends out a video signal to the outside and receives a camera remote control signal and a rotary base remote control signal from the outside. A control unit (40) controls the camera (16) according to the camera remote control signal. The rotary base remote control signal is superimposed on a video signal to be transmitted to the rotary base receiver (28) by a video signal circuit (52). The rotary base receiver (28) extracts the rotary base remote control signal from the video signal, and controls a rotary base (14) according to the rotary base remote control signal. The configuration for a superimposed transmission can be utilized and both the camera and the rotary base can be controlled with ease through communications with the outside.
    • 相机(16)和旋转底座接收器(28)彼此连接以能够发送视频信号。 在相机(16)中,网络服务器(50)向外部发送视频信号,并从外部接收摄像机遥控信号和旋转基座遥控信号。 控制单元(40)根据照相机遥控信号控制照相机(16)。 旋转基座遥控信号被叠加在视频信号上,由视频信号电路(52)发送到旋转基座接收器(28)。 旋转底座接收器(28)从视频信号中提取旋转基座遥控信号,并根据旋转基座遥控信号控制旋转座(14)。 可以利用叠加传输的配置,并且通过与外部通信可以容易地控制照相机和旋转底座。
    • 9. 发明授权
    • Monitor camera system and method of controlling monitor camera thereof
    • 监控相机系统及其监控摄像机的控制方法
    • US06977678B1
    • 2005-12-20
    • US09649175
    • 2000-08-29
    • Jyoji WadaKatsumi YanoHaruo Kogane
    • Jyoji WadaKatsumi YanoHaruo Kogane
    • H04N5/225H04N5/232H04N7/18
    • H04N5/23238G08B13/1963H04N5/2251H04N5/23203
    • In a monitor camera system includes a monitor camera capable of rotation 360 degrees in pan directions and 180 degrees in tilt directions and a control unit for controlling the monitor camera remotely, the control unit sends control data indicative of a photographing position or photographing direction of the monitor camera to said monitor camera, while the monitor camera receives the control data to calculate, on the basis of the control data, a pan rotation quantity and a tilt rotation quantity by which the monitor camera is to be rotated from the present camera position, thus accomplishing its pan rotation or tilt rotation according to the calculated rotation quantity. Accordingly, with this configuration, an operator can align the monitor camera in a target direction by merely manipulating a joystick in the target direction, that is, can face the monitor camera to a target position through a simple manipulation. Additionally, this configuration makes it unnecessary for the operator to understand the present camera direction.
    • 在监视摄像机系统中,包括能够在俯仰方向上360度旋转并且倾斜方向180度的监视摄像机以及用于远程控制监视摄像机的控制单元,控制单元发送指示摄像位置或拍摄方向的控制数据 将摄像机监视到所述监视摄像机,同时监视摄像机接收控制数据,以根据控制数据计算从本摄像机位置监视摄像机旋转的平移旋转量和倾斜旋转量, 从而根据计算出的旋转量完成其平转旋转或倾斜旋转。 因此,利用这种结构,操作者可以通过简单的操作仅仅通过操纵目标方向上的操纵杆来将目标方向对准监视摄像机,即可以通过简单的操作将监视摄像机面对目标位置。 此外,该配置使得操作者不必了解当前的照相机方向。
    • 10. 发明授权
    • Monitoring video camera apparatus
    • 监控摄像机
    • US06392693B1
    • 2002-05-21
    • US09354098
    • 1999-07-15
    • Koji WakiyamaKazutaka HiguchiHaruo Kogane
    • Koji WakiyamaKazutaka HiguchiHaruo Kogane
    • H04N713
    • H04N7/183
    • A monitoring camera apparatus includes: a video camera; a panning mechanism; and a tilting mechanism; and automatic pivoting portion for operating the panning mechanism to pan the video camera by a predetermined pan (tilt) angle or to a predetermined pan (tilt) angle position when the video camera reaches the predetermined vertical (horizontal) position and a tilt command is inputted. The predetermined vertical position may be determined when the video camera directs the downward in the vertical direction. The auto-pivoting function may be started in response to both predetermined pan and tilt positions. During the auto-pivoting, controlling the video signal processing is stopped, pan and tilt speed is set to maximum, the direction of panning may be judged when the predetermined angle position is set. After auto-pivoting, tilt is made upwardly though the tilt command indicates downward and the screen image may be inverted and the pan and tilt positions are held until pan (tilt) command is inputted. The predetermined pan (tilt) angle and auto-pivoting mode set/reset may be set externally.
    • 监视摄像机装置包括:摄像机; 平移机制; 和倾斜机构; 以及当摄像机达到预定垂直(水平)位置并且输入倾斜命令时,用于操作摇摄机构以使摄像机平移预定摇摄(倾斜)角度或预定摇摄(倾斜)角位置的自动旋转部分 。 当摄像机在垂直方向上向下引导时,可以确定预定的垂直位置。 可以响应于预定的平移和倾斜位置而启动自动转动功能。 在自动转动期间,控制视频信号处理停止,平移和倾斜速度被设定为最大,可以在设定预定角度位置时判断平移方向。 自动转动后,倾斜指示向下倾斜,屏幕图像可能反转,并保持平移和倾斜位置,直到输入“pan(tilt)”命令。 可以从外部设定预定的平移(倾斜)角度和自动转动模式设定/复位。