DocumentCode :
714370
Title :
Image processing based package volume detection with Kinect
Author :
Ocak, Hasan ; Ambarkutuk, Murat ; Kucukyildiz, Gurkan ; Karakaya, Suat
Author_Institution :
Mekatronik Muhendisligi Bolumu, Kocaeli Univ., Kocaeli, Turkey
fYear :
2015
fDate :
16-19 May 2015
Firstpage :
515
Lastpage :
518
Abstract :
In this study, an image processing based package volume detection scheme that utilizes Kinect depth sensor was developed in Matlab environment. Background subtraction method was used to obtain the foreground image that contains the package to be measured from the Kinect depth image. Connected components labeling method was used to segment the foreground image. Out of the components determined by connected components labeling, the one that has the maximum pixel area overlapping with the measuring plate was assumed to be the package of interest. Package orientation angle and center point were then determined. Hough transform was applied to the package image to obtain the lines that passes through package edges. The package corners were obtained by finding the four intersection points of the detected lines. Real world coordinates of the package corners were calculated using the Kinect´s intrinsic matrix. Package width and length were determined by finding the distance between the corners in the real world coordinate system. Finally, the package height was determined by differencing plate depth and average depth value of points on the package surface. It was observed that the algorithm performed successfully and the measurement error was within 1cm under presence of various disturbance effects.
Keywords :
Hough transforms; image processing; measurement errors; object detection; sensors; Hough transform; Kinect depth sensor; Kinect intrinsic matrix; Matlab environment; background subtraction method; connected component labeling method; coordinate system; disturbance effects; foreground image; image processing; measurement error; package corners; package edges; package height; package image; package orientation angle; package surface; package volume detection scheme; package width; pixel area; Calibration; Cameras; Conferences; Image processing; Labeling; MATLAB; Transforms; Hough transform; Kinect; camera calibration; image processing; package volume detection;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing and Communications Applications Conference (SIU), 2015 23th
Conference_Location :
Malatya
Type :
conf
DOI :
10.1109/SIU.2015.7129873
Filename :
7129873
Link To Document :
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