首页> 外国专利> computational methods and electronic kameravorrichtung for determining the distance of objects, to the rapid autofokussieren and improved sharpness of reach.

computational methods and electronic kameravorrichtung for determining the distance of objects, to the rapid autofokussieren and improved sharpness of reach.

机译:计算方法和电子kameravorrichtung,用于确定物体与快速自动测距的距离,并提高到达的清晰度。

摘要

The present invention is a method and apparatus for determing the distance of a surface patch of an object from a camera system and also for focusing a surface patch of such object as well as obtaining an improved focus image of the surface patch. The present invention also includes a method of determining a set of unknown parameters of a linear shift-invariant system. The camera system of the present invention has an aperture through which light enters, an image detector, an image forming optical system having first and second principal planes and a focal length, the second principal plane arranged closer to the image detector than the first principal plane, a light filter a camera controller, and an image processor operatively connected to the image detector and to the camera controller. The camera is set to a first set of camera parameters which include the distance (s) between the second principal plane and the image detector, the diameter (@) of the camera aperture, the focal length ( NLG ) of the camera system and the spectral characteristic ( lambda ) of light transmitted by the light filter. The first image is recorded on the image detector and is preprocessed as a digital signal to provide a first normalized image related to the point spread function of the camera system by a convolution operation. A first set of Fourier coefficients are calculated at a set of discrete spatial frequencies. Then at least one of the camera parameters is changed and a second image is formed on the image detector and is processed as the first image was processed. The first set of Fourier coefficients are divided by the second set of Fourier coefficients to provide a set of ratio values. A single mathematical relationship corresponding to each member of the set of ratios is provided without the necessity of an intermediate parameter and without regard to the form of the point spread function of the camera system. The relationship represents the ratio of the optical transfer function of the first normalized image to the optical transfer function of the second normalized image. The mathematical relationship depends only on the camera parameters and has one unknown, which is equal to the distance of the surface patch from the camera system. The ratio value can be substituted in a single mathematical relationship to obtain a set of equations which can be solved to determine the distance of the surface patch from the camera system. Alternatively, the set of ratio values can be compared to the values in a look-up table stored in computer memory. The location in the table where the stored values match the ratio values gives the distance of the object from the camera system. The apparatus and the method of the present invention are widely applicable and they significantly enhance the efficiency of image processing to provide the distance of an object and required changes in the camera parameters to focus the object.
机译:本发明是一种用于确定物体的表面补丁距相机系统的距离并且还用于聚焦该物体的表面补丁以及获得该表面补丁的改善的聚焦图像的方法和设备。本发明还包括一种确定线性平移不变系统的一组未知参数的方法。本发明的照相机系统具有光通过其进入的孔,图像检测器,具有第一和第二主平面以及焦距的图像形成光学系统,第二主平面布置成比第一主平面更靠近图像检测器。 ,滤光器,相机控制器,和可操作地连接到图像检测器和相机控制器的图像处理器。将相机设置为第一组相机参数,包括第二主平面与图像检测器之间的距离,相机光圈的直径(@),相机系统的焦距(NLG)和滤光片透射的光的光谱特性(λ)。第一图像被记录在图像检测器上,并且被预处理为数字信号,以通过卷积运算提供与相机系统的点扩展功能有关的第一归一化图像。在一组离散空间频率处计算第一组傅里叶系数。然后,改变相机参数中的至少一个,并且在图像检测器上形成第二图像并且在处理第一图像时对其进行处理。将第一组傅立叶系数除以第二组傅立叶系数以提供一组比率值。提供了与该组比率中的每个成员相对应的单个数学关系,而无需中间参数,并且无需考虑相机系统的点扩展函数的形式。该关系表示第一规格化图像的光学传递函数与第二规格化图像的光学传递函数之比。数学关系仅取决于相机参数,并且具有一个未知数,该未知数等于表面贴片到相机系统的距离。可以将比率值替换为单个数学关系以获得一组方程,可以将这些方程求解以确定表面贴片与相机系统的距离。或者,可以将这组比率值与存储在计算机内存中的查找表中的值进行比较。表中存储的值与比率值匹配的位置给出了物体与摄像头系统的距离。本发明的设备和方法可广泛应用,并且它们显着提高了图像处理的效率,以提供物体的距离和照相机参数的所需改变以聚焦该物体。

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