Title :
Real-time line extraction using a highly parallel Hough transform board
Author :
Nakanishi, Mamoru ; Ogura, Takeshi
Author_Institution :
NTT Integrated Inf. & Energy Syst. Lab., Kanagawa, Japan
Abstract :
We describe real-time straight line extraction system and evaluate it. The main part of our system involves a highly parallel processing board on which a highly parallel Hough transform algorithm is mounted. We used the Hough transform, because it useful in line detection. In this board, a content addressable memory (CAM) LSI with dedicated functions for highly parallel image processing is used in this board. Both voting and peak extraction, which make up the Hough transform, are directly executed by the CAM. The CAM acts as a PE (processing element) array that performs highly parallel processing for the Hough transform and it also acts as a memory for two-dimensional Hough space. Sixteen thousand Hough points can be mapped at once and thousands more can be mapped by time-sharing in one CAM. Also variable Hough point resolution is available, because the CAM-based HT algorithm on this board is scalable. Thus line extraction by the Hough transform of 16-K point Hough space for a 256×256 picture can be carried out at video-rates by using a Hough board with a single CAM chip. Moreover a Hough transform with weighted voting for noisy images can also be achieved at video-rates
Keywords :
Hough transforms; content-addressable storage; edge detection; feature extraction; image processing equipment; parallel algorithms; parallel architectures; real-time systems; 16-K point Hough space; Hough transform; content addressable memory; highly parallel processing board; image processing; line detection; noisy images; parallel algorithm; peak extraction; processing element array; real-time line extraction; straight line extraction; variable Hough point resolution; video-rates; weighted voting; Application software; Associative memory; CADCAM; Computer aided manufacturing; Data mining; Equations; Hardware; Image processing; Large scale integration; Parallel processing; Real time systems; Space technology; Time sharing computer systems; Voting;
Conference_Titel :
Image Processing, 1997. Proceedings., International Conference on
Conference_Location :
Santa Barbara, CA
Print_ISBN :
0-8186-8183-7
DOI :
10.1109/ICIP.1997.638838