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    • 1. 发明授权
    • Structured-light based measuring method and system
    • 基于结构光的测量方法和系统
    • US09360307B2
    • 2016-06-07
    • US13696785
    • 2010-05-07
    • Danwei ShiDi WuWenchuang ZhaoQi Xie
    • Danwei ShiDi WuWenchuang ZhaoQi Xie
    • H04N7/18G01B11/25G06T7/00
    • G01B11/2545G06T7/521G06T2207/10012
    • A structured-light measuring method, includes: matching process, in which the number and the low-precision depth of a laser point are achieved by using the imaging position of the laser point on a first camera (21) according to a first corresponding relationship in a calibration database, and the imaging position of the laser point on a second camera (22) is searched according to the number and the low-precision depth of the laser point so as to acquire the candidate matching points, then the matching process is completed according to the imaging position of the first camera (21) and the candidate matching points of the imaging position of the first camera (21) on the second camera (22) so that a matching result is achieved; and computing process, in which the imaging position of the second camera (22) matching with the imaging position of the first camera (21) is achieved according to the matching result, and then the precision position of the laser point is determined by a second corresponding relationship in the calibration database. A structured-light measuring system utilizes the above measuring method.
    • 一种结构光测量方法,包括:匹配处理,其中通过根据第一对应关系在第一相机(21)上使用激光点的成像位置来实现激光点的数量和低精度深度 在校准数据库中,根据激光点的数量和低精度深度搜索激光点在第二相机(22)上的成像位置,以获得候选匹配点,则匹配处理为 根据第一相机(21)的成像位置和第二相机(22)上的第一相机(21)的成像位置的候选匹配点完成,从而实现匹配结果; 以及计算处理,其中根据匹配结果实现与第一相机(21)的成像位置匹配的第二相机(22)的成像位置,然后由第二相位确定激光点的精确位置 校准数据库中的对应关系。 结构光测量系统采用上述测量方法。
    • 3. 发明申请
    • Structured-Light Based Measuring Method and System
    • 基于结构光的测量方法和系统
    • US20130050476A1
    • 2013-02-28
    • US13696785
    • 2010-05-07
    • Danwei ShiDi WuWenchuang ZhaoQi Xie
    • Danwei ShiDi WuWenchuang ZhaoQi Xie
    • H04N7/18
    • G01B11/2545G06T7/521G06T2207/10012
    • A structured-light measuring method, includes: matching process, in which the number and the low-precision depth of a laser point are achieved by using the imaging position of the laser point on a first camera (21) according to a first corresponding relationship in a calibration database, and the imaging position of the laser point on a second camera (22) is searched according to the number and the low-precision depth of the laser point so as to acquire the candidate matching points, then the matching process is completed according to the imaging position of the first camera (21) and the candidate matching points of the imaging position of the first camera (21) on the second camera (22) so that a matching result is achieved; and computing process, in which the imaging position of the second camera (22) matching with the imaging position of the first camera (21) is achieved according to the matching result, and then the precision position of the laser point is determined by a second corresponding relationship in the calibration database. A structured-light measuring system utilizes the above measuring method.
    • 一种结构光测量方法,包括:匹配处理,其中通过根据第一对应关系在第一相机(21)上使用激光点的成像位置来实现激光点的数量和低精度深度 在校准数据库中,根据激光点的数量和低精度深度搜索激光点在第二相机(22)上的成像位置,以获得候选匹配点,则匹配处理为 根据第一相机(21)的成像位置和第二相机(22)上的第一相机(21)的成像位置的候选匹配点完成,从而实现匹配结果; 以及计算处理,其中根据匹配结果实现与第一相机(21)的成像位置匹配的第二相机(22)的成像位置,然后由第二相位确定激光点的精确位置 校准数据库中的对应关系。 结构光测量系统采用上述测量方法。
    • 4. 发明申请
    • TARGET DETECTION METHOD AND APPARATUS AND IMAGE ACQUISITION DEVICE
    • 目标检测方法和装置和图像获取装置
    • US20120106799A1
    • 2012-05-03
    • US13382140
    • 2010-03-05
    • Danwei ShiKun Zhou
    • Danwei ShiKun Zhou
    • G06K9/00
    • G06T7/0081G06K9/3241G06T7/11G06T7/174G06T7/194G06T2207/10152G06T2207/20224
    • The present invention provides a target detection method comprising the following steps controlling a modulated light emitting device to emit optical pulse signals with a first light intensity and a second light intensity to a target to be detected and a background, wherein the capabilities of reflecting the light pulse signals of the target to be detected and the background are different, controlling an image sensor to acquire images of the target to be detected and the background, wherein the image sensor comprises a plurality of image acquisition regions, and it successively scans the same image acquisition region once in the first light intensity and in the second light intensity respectively to obtain a first light intensity image and a second light intensity image, and stores them into corresponding locations in a first frame image and a second frame image respectively, distinguishing the target to be detected and the background, using the first frame image and the second frame image. The present invention also provides a target detection apparatus and an image acquisition device. This invention can precisely detect targets, even moving targets, in a strong light background.
    • 本发明提供了一种目标检测方法,其包括以下步骤:控制调制发光器件向待检测目标发射具有第一光强度和第二光强度的光脉冲信号和背景,其中反射光的能力 要检测的目标的脉冲信号和背景不同,控制图像传感器以获取要检测的目标的图像和背景,其中图像传感器包括多个图像采集区域,并且它连续地扫描相同的图像 获取区域分别处于第一光强度和第二光强度中以获得第一光强度图像和第二光强度图像,并将它们分别存储在第一帧图像和第二帧图像中的相应位置中,从而区分目标 使用第一帧图像和第二帧i进行检测和背景 法师 本发明还提供了一种目标检测装置和图像获取装置。 本发明可以在强光背景下精确地检测目标,甚至移动目标。
    • 6. 发明授权
    • CMOS image sensor, timing control method and exposure method thereof
    • CMOS图像传感器,定时控制方法及其曝光方法
    • US08964083B2
    • 2015-02-24
    • US13701741
    • 2010-06-04
    • Danwei ShiKun ZhouDi Wu
    • Danwei ShiKun ZhouDi Wu
    • H04N3/14H04N5/335H04N5/341H04N5/235H04N5/353H01L27/146
    • H04N5/341H01L27/14612H04N5/2353H04N5/2354H04N5/353
    • The invention discloses a CMOS image sensor, a timing control method and an exposure method thereof. The image sensor includes a pixel array composed of multiple pixel rows and a control chip controlling the array. The control chip controls each pixel row to expose in the exposure time during one exposure period of the pixel row, and then wait predetermined time after the exposure time to output data. In the invention, the exposure time of the image sensor is separated from the time of outputting data. Therefore, the working mode of the image sensor can be controlled more flexibly. By the manner of controlling the pixel rows in the sub-array of the image sensor to expose synchronously, the flash time of the light source is the same as the exposure time of each single sub-array, thereby improving the utilization efficiency of the source energy and ensuring real-time image sampling.
    • 本发明公开了一种CMOS图像传感器,其定时控制方法及其曝光方法。 图像传感器包括由多个像素行组成的像素阵列和控制阵列的控制芯片。 控制芯片控制每个像素行在像素行的一个曝光期间的曝光时间内曝光,然后等待曝光时间之后的预定时间输出数据。 在本发明中,图像传感器的曝光时间与输出数据的时间分离。 因此,可以更灵活地控制图像传感器的工作模式。 通过控制图像传感器的子阵列中的像素行同时曝光的方式,光源的闪光时间与每个单个子阵列的曝光时间相同,从而提高了源的利用效率 能量和确保实时图像采样。
    • 8. 发明申请
    • CMOS Image Sensor, Timing Control Method and Exposure Method Thereof
    • CMOS图像传感器,定时控制方法及其曝光方法
    • US20130076952A1
    • 2013-03-28
    • US13701741
    • 2010-06-04
    • Danwei ShiKun ZhouDi Wu
    • Danwei ShiKun ZhouDi Wu
    • H04N5/341H01L27/146
    • H04N5/341H01L27/14612H04N5/2353H04N5/2354H04N5/353
    • The invention discloses a CMOS image sensor, a timing control method and an exposure method thereof. The image sensor includes a pixel array composed of multiple pixel rows and a control chip controlling the array. The control chip controls each pixel row to expose in the exposure time during one exposure period of the pixel row, and then wait predetermined time after the exposure time to output data. In the invention, the exposure time of the image sensor is separated from the time of outputting data. Therefore, the working mode of the image sensor can be controlled more flexibly. By the manner of controlling the pixel rows in the sub-array of the image sensor to expose synchronously, the flash time of the light source is the same as the exposure time of each single sub-array, thereby improving the utilization efficiency of the source energy and ensuring real-time image sampling.
    • 本发明公开了一种CMOS图像传感器,其定时控制方法及其曝光方法。 图像传感器包括由多个像素行组成的像素阵列和控制阵列的控制芯片。 控制芯片控制每个像素行在像素行的一个曝光期间的曝光时间内曝光,然后等待曝光时间之后的预定时间输出数据。 在本发明中,图像传感器的曝光时间与输出数据的时间分离。 因此,可以更灵活地控制图像传感器的工作模式。 通过控制图像传感器的子阵列中的像素行同时曝光的方式,光源的闪光时间与每个单个子阵列的曝光时间相同,从而提高了源的利用效率 能量和确保实时图像采样。