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    • 7. 发明申请
    • END POSITION DETECTION DEVICE, IMAGE FORMING APPARATUS, END POSITION DETECTION METHOD AND STORAGE MEDIUM
    • 终端位置检测装置,图像形成装置,终端位置检测方法和存储介质
    • US20150338812A1
    • 2015-11-26
    • US14716815
    • 2015-05-19
    • Shogo Miura
    • Shogo Miura
    • G03G15/00G01B11/00
    • G01B11/046B65H2553/416G03G15/234G03G2215/00586G03G2215/00599G03G2215/00616G03G2215/00721
    • An end position detection device includes a light emission unit including plural light sources for plural colors, respectively, each of the light sources being configured to emit line-like light of one of the colors which is long in a width direction to a conveyance object, the width direction being orthogonal to a conveyance direction of the conveyance object; a light reception unit including plural light reception elements, each configured to receive reflected light from the conveyance object and output a signal corresponding to a received amount of light, arranged in an array in the width direction; and a detection unit configured to detect an end position in the width direction of the conveyance object based on the signals output from the light reception elements in a case where the light sources for the respective colors simultaneously emit light to the conveyance object.
    • 结束位置检测装置包括:发光单元,分别包括用于多种颜色的多个光源,每个光源被配置为发射在宽度方向上长于输送对象的颜色之一的线状光, 所述宽度方向与所述输送物体的输送方向正交; 光接收单元,包括多个光接收元件,每个光接收元件被配置为接收来自所述输送对象的反射光,并输出与宽度方向排列成一阵列的接收光量相对应的信号; 以及检测单元,被配置为在用于各种颜色的光源同时向所述输送对象发光的情况下,基于从所述光接收元件输出的信号来检测所述输送对象的宽度方向上的结束位置。
    • 8. 发明授权
    • Optical sensor
    • 光学传感器
    • US08928894B2
    • 2015-01-06
    • US13648058
    • 2012-10-09
    • Leuze Electronic GmbH + Co. KG
    • Horst EssigFabian GeigerDieter KlassJuergen-Ralf Weber
    • G01B11/14G01B11/02G01B11/04G01B11/25
    • G01B11/14G01B11/028G01B11/046G01B11/2522
    • A method for optically monitoring an object within a monitoring area includes transmitting light rays with a light transmitting unit that form a line of light on the object. The line of light reflected from the object is imaged on an array of receiving elements that detects the reflected line of light and produces receiving element signals that correspond to measuring points on the object. The receiving element signals are evaluated to structure a distance profile of the object using a triangulation principle. The evaluating includes generating at least one evaluation window which covers in a first direction a local region extending along the line of light and in a second direction a distance range, and using the measuring points located farthest outside within the evaluation window for a left limit point and a right limit point for determining object data.
    • 用于光学监测监视区域内的物体的方法包括用在物体上形成光线的光发射单元传输光线。 从物体反射的光线成像在检测反射光线的接收元件的阵列上,并产生对应于物体上的测量点的接收元件信号。 评估接收元件信号以使用三角测量原理构造物体的距离轮廓。 所述评估包括产生至少一个评估窗口,所述评估窗口沿第一方向覆盖沿着所述光线延伸的局部区域,并且沿第二方向覆盖距离范围,并且使用位于评估窗口内最远的测量点用于左边界点 以及用于确定对象数据的右极限点。
    • 10. 发明申请
    • METHOD FOR PRECISELY DETECTING CRACK WIDTH
    • 精确检测裂纹宽度的方法
    • US20100309309A1
    • 2010-12-09
    • US12479270
    • 2009-06-05
    • Luo Bing
    • Luo Bing
    • H04N7/18
    • G01B11/046
    • A method for precisely detecting a width of a crack on a surface of an object is provided. The method includes positioning a crack width observation apparatus on the object, turning on a first light source at a first side of the crack, and photographing the surface with the first light source on to generate a first photograph to determine a boundary of the crack at the side distanced closest to the light source. A second light source at a second side of the crack is turned on to irradiate the surface of the object, and the surface is photographed with the second light source on to generate a second photograph to determine a boundary of the crack at the second side. The first photograph and the second photograph are processed to obtain a picture showing an actual boundary of the crack.
    • 提供了一种用于精确检测物体表面上的裂纹的宽度的方法。 该方法包括将裂纹宽度观察装置定位在物体上,打开裂缝第一侧的第一光源,并用第一光源拍摄该表面以产生第一照片,以确定裂纹的边界 最靠近光源的一侧远离。 打开裂缝第二侧的第二光源照射物体的表面,并用第二光源拍摄表面,以产生第二张照片,以确定第二侧裂缝的边界。 处理第一张照片和第二张照片以获得显示裂纹的实际边界的图片。