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    • 3. 发明申请
    • System and Method for Side-by-Side Inspection of a Device
    • 装置并排检查的系统和方法
    • US20120154594A1
    • 2012-06-21
    • US13240632
    • 2011-09-22
    • Binglong XieYakup GencXiang Gao
    • Binglong XieYakup GencXiang Gao
    • H04N7/18
    • G01N21/9515G01B11/245G01N21/954G06T7/001G06T2200/24G06T2207/30164
    • Systems and methods for inspecting a device are disclosed. The method includes arranging the device in a known position relative to a plurality of movable cameras. The plurality of movable cameras are mounted on a controllable actuator. The plurality of cameras are pointed at the device by controlling the controllable actuator to position the camera with a user interface. A computing device renders a virtual image from a CAD model of the device with a computing device. An image of the device generated by the camera is displayed on a display. The computing device also causes the rendered virtual image of the device to be displayed on the display. The camera images and the rendered images can be displayed side-by-side, in an overlay fashion or both.
    • 公开了用于检查设备的系统和方法。 该方法包括将装置相对于多个可移动相机布置在已知位置。 多个可移动摄像机安装在可控致动器上。 多个摄像机通过控制可控制的致动器来定位设备,使其具有用户界面。 计算设备使用计算设备从设备的CAD模型呈现虚拟图像。 由相机生成的设备的图像显示在显示器上。 计算设备还使得显示器上显示设备的渲染虚拟映像。 相机图像和渲染图像可以并排显示,以重叠的方式或两者都显示。
    • 5. 发明授权
    • Trigger for blade imaging based on a controller
    • 基于控制器的刀片成像触发器
    • US09462183B2
    • 2016-10-04
    • US13531658
    • 2012-06-25
    • Binglong XieYakup GencFrank Dierkes
    • Binglong XieYakup GencFrank Dierkes
    • H04N5/232F01D21/00G01N21/88G01N21/954
    • H04N5/23222F01D21/003F05D2230/72G01N21/8806G01N21/8851G01N21/954G01N2021/8838
    • A rotating rotor in a turbine has blades attached. At least one blade is a reference blade of which a reference position is determined by a Once-Per-Rotation sensor. A camera positioned at a viewing port takes a sequence of images of all the blades during a rotation at a trigger moment determined by a controller. The controller receives a signal indicating that the reference blade passes its reference point. The controller is provided with data about the number of blades, the position of the camera and a desired dwell of an image related to the blade. The controller calculates the trigger moments and generates trigger signals to the camera. The trigger moment is adjusted for changing rotor speed by extracting a blade feature from blade images. The camera records images that are labeled and stored as image data on a storage device.
    • 涡轮机中的旋转转子具有附接的叶片。 至少一个叶片是参考叶片,其参考位置由每转一次传感器确定。 位于观察端口处的摄像机在由控制器确定的触发时刻的旋转期间拍摄所有叶片的一系列图像。 控制器接收到指示参考刀片通过其参考点的信号。 控制器提供关于刀片数量,相机的位置和与刀片相关的图像的期望驻留的数据。 控制器计算触发力矩并产生相机的触发信号。 通过从刀片图像中提取刀片特征来调整触发时刻以改变转子速度。 照相机将已标记和存储为图像数据的图像记录在存储设备上。
    • 6. 发明申请
    • TRIGGER FOR BLADE IMAGING BASED ON A CONTROLLER
    • 用于基于控制器的刀片成像的触发器
    • US20130162846A1
    • 2013-06-27
    • US13531658
    • 2012-06-25
    • Binglong XieYakup GencFrank Dierkes
    • Binglong XieYakup GencFrank Dierkes
    • H04N5/232
    • H04N5/23222F01D21/003F05D2230/72G01N21/8806G01N21/8851G01N21/954G01N2021/8838
    • A rotating rotor in a turbine has blades attached. At least one blade is a reference blade of which a reference position is determined by a Once-Per-Rotation sensor. A camera positioned at a viewing port takes a sequence of images of all the blades during a rotation at a trigger moment determined by a controller. The controller receives a signal indicating that the reference blade passes its reference point. The controller is provided with data about the number of blades, the position of the camera and a desired dwell of an image related to the blade. The controller calculates the trigger moments and generates trigger signals to the camera. The trigger moment is adjusted for changing rotor speed by extracting a blade feature from blade images. The camera records images that are labeled and stored as image data on a storage device.
    • 涡轮机中的旋转转子具有附接的叶片。 至少一个叶片是参考叶片,其参考位置由每转一次传感器确定。 位于观察端口处的摄像机在由控制器确定的触发时刻的旋转期间拍摄所有叶片的一系列图像。 控制器接收到指示参考刀片通过其参考点的信号。 控制器提供关于刀片数量,相机的位置和与刀片相关的图像的期望驻留的数据。 控制器计算触发力矩并产生相机的触发信号。 通过从刀片图像中提取刀片特征来调整触发时刻以改变转子速度。 照相机将已标记和存储为图像数据的图像记录在存储设备上。
    • 7. 发明申请
    • Component fusion for face detection
    • 用于人脸检测的组件融合
    • US20050001013A1
    • 2005-01-06
    • US10842802
    • 2004-05-11
    • Binglong XieDorin ComaniciuVisvanathan RameshMarkus Simon
    • Binglong XieDorin ComaniciuVisvanathan RameshMarkus Simon
    • G06K9/00B23K1/00
    • G06K9/00281
    • A system and method for object detection are provided where the system includes a component detection unit for detecting components in an image, a component fusion unit in signal communication with the component detection unit for fusing the components into an object, and a CPU in signal communication with the detection and fusion units for comparing the fused components with a statistical model; and the method includes receiving observation data for a plurality of training images, forming at least one statistical model from the plurality of training images, receiving an input image having a plurality of pixels, detecting a plurality of components in the input image, determining a fusion of the detected components, comparing the fusion with the statistical model, and detecting an object in accordance with the comparison.
    • 提供了一种用于对象检测的系统和方法,其中系统包括用于检测图像中的分量的分量检测单元,与分量检测单元进行信号通信的分量融合单元,用于将分量融合到对象中,以及在信号通信中的CPU 用检测和融合单元比较融合成分与统计模型; 并且该方法包括接收多个训练图像的观测数据,从多个训练图像中形成至少一个统计模型,接收具有多个像素的输入图像,检测输入图像中的多个分量,确定融合 的检测组件,将融合与统计模型进行比较,并根据比较来检测对象。
    • 8. 发明授权
    • Component fusion for face detection
    • 用于人脸检测的组件融合
    • US07602941B2
    • 2009-10-13
    • US10842802
    • 2004-05-11
    • Binglong XieDorin ComaniciuVisvanathan RameshMarkus Simon
    • Binglong XieDorin ComaniciuVisvanathan RameshMarkus Simon
    • G06K9/00G06K9/62H04N9/47H04N5/225
    • G06K9/00281
    • A system and method for object detection are provided where the system includes a component detection unit for detecting components in an image, a component fusion unit in signal communication with the component detection unit for fusing the components into an object, and a CPU in signal communication with the detection and fusion units for comparing the fused components with a statistical model; and the method includes receiving observation data for a plurality of training images, forming at least one statistical model from the plurality of training images, receiving an input image having a plurality of pixels, detecting a plurality of components in the input image, determining a fusion of the detected components, comparing the fusion with the statistical model, and detecting an object in accordance with the comparison.
    • 提供了一种用于对象检测的系统和方法,其中系统包括用于检测图像中的分量的分量检测单元,与分量检测单元进行信号通信的分量融合单元,用于将分量融合到对象中,以及在信号通信中的CPU 用检测和融合单元比较融合成分与统计模型; 并且该方法包括接收多个训练图像的观测数据,从多个训练图像中形成至少一个统计模型,接收具有多个像素的输入图像,检测输入图像中的多个分量,确定融合 的检测组件,将融合与统计模型进行比较,并根据比较来检测对象。