SYSTEM FOR DETERMINING GEOMETRIC PARAMETERS OF THREE-DIMENSIONAL OBJECTS Russian patent published in 2018 - IPC G01B9/27 

Abstract RU 2650857 C1

FIELD: measuring equipment.

SUBSTANCE: present invention relates to non-contact measurements of contours or curves of three-dimensional objects in real time. System for determining geometric parameters of three-dimensional objects comprises a first digital camera and a second digital camera, forming a stereo camera, a mass sensor, a speed sensor, a camera calibration unit, sensor operation unit, a unit for constructing an intermediate three-dimensional model and depth maps, image recognition unit, a unit for intelligent evaluation of positions and dimensions of objects, a processor for processing data, a data storage module, data output module, wherein the first digital camera and the second digital camera are connected to the camera calibration unit, the mass sensor and the speed sensor are connected to the sensor operation unit, camera calibration unit is connected to the unit for constructing the intermediate three-dimensional model and depth maps and the image recognition unit, sensor operation unit is connected to the unit for intelligent evaluation of positions and dimensions of objects, unit for constructing the intermediate three-dimensional model and depth maps is connected to the image recognition unit and the unit for intelligent evaluation of positions and dimensions of objects, image recognition unit is connected to the unit for intelligent evaluation of positions and dimensions of objects, unit for intelligent evaluation of positions and dimensions of objects is connected to the processor for processing data, the processor for processing data is connected to the data storage module and the data output module.

EFFECT: technical result of the invention is increased speed and accuracy of control of geometric parameters of three-dimensional objects.

6 cl, 1 dwg

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RU 2 650 857 C1

Authors

Dubenko Yurij Vladimirovich

Timchenko Nikolaj Nikolaevich

Dates

2018-04-17Published

2017-04-06Filed