DocumentCode
3383378
Title
Straight-line detection on a gated-connection VLSI network
Author
Shu, D.B. ; Nash, J.G. ; Eshaghian, M.M. ; Kim, K.
Author_Institution
Hughes Res. Lab., Malibu, CA, USA
Volume
ii
fYear
1990
fDate
16-21 Jun 1990
Firstpage
456
Abstract
An efficient parallel processing algorithm for detecting straight lines on a mesh-connected computer enhanced with a gate-connection network (GCN) is presented. The algorithm is composed of a modified Hough transform that projects compressed pixels in parallel in a given direction and a parallel procedure that extracts the beginning and end points of detected lines. Both parts require the flexible communication capabilities of the enhance mesh. The GCN can be used to dynamically reconfigure the interconnections between hundreds of processors. It is shown how the GCN can electrically connect all of the edge pixels on a straight line. For an n ×n pixel array, the algorithm can detect all lines in O (log n ) time. Initial experimental results obtained using a simulator of the GCN implemented on a very-large-scale integration (VLSI) chip are presented. Though the accuracy of the algorithm depends largely on the assigned threshold values, the authors believe its speed is superior to that of any other Hough-based technique by a factor of at least two orders of magnitude
Keywords
VLSI; computational complexity; computerised pattern recognition; computerised picture processing; digital signal processing chips; parallel algorithms; transforms; Hough transform; VLSI; computerised pattern recognition; computerised picture processing; edge pixels; gate-connection network; mesh-connected computer; parallel processing algorithm; straight line detection; threshold values; Computer networks; Computer vision; Concurrent computing; Costs; Laboratories; Parallel processing; Pixel; Projection algorithms; Very large scale integration;
fLanguage
English
Publisher
ieee
Conference_Titel
Pattern Recognition, 1990. Proceedings., 10th International Conference on
Conference_Location
Atlantic City, NJ
Print_ISBN
0-8186-2062-5
Type
conf
DOI
10.1109/ICPR.1990.119400
Filename
119400
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