DocumentCode
1120397
Title
Chain Coding with a Hexagonal Lattice
Author
Scholten, Daniel K. ; Wilson, Stephen G.
Author_Institution
Department of Electrical Engineering, University of Virginia, Charlottesville, VA 22901; The Analytic Sciences Corporation, Reading, MA 01867.
Issue
5
fYear
1983
Firstpage
526
Lastpage
533
Abstract
This paper investigates the performance of chain code quantization of general curves using a hexagonal lattice structure, as a means of improving efficiency over the standard square lattice. Performance is first computed theoretically, assuming a generalization of grid-intersect quantization, and the curve to be quantized is assumed to be a straight line. An algorithm is then developed to perform chain coding using the hex lattice. Computer simulations were performed to evaluate hexagonal chain coding for a variety of curves, including circles of various curva-ture, straight lines, and a stochastic curve model. We find that the straight-line theory is substantiated for curves whose radius of curvature is roughly twice the lattice constant. For a given peak error in quanti-zation, hexagonal coding reduces the bit rate about 15 percent relative to the square lattice codes, and exhibits qualitative improvements in fidelity as well.
Keywords
Bit rate; Code standards; Computer simulation; Encoding; Grid computing; Lattices; Performance evaluation; Quantization; Rate-distortion; Stochastic processes; Chain codes; geometric probability; hexagonal lattice; information theory; lattice quantization region; line quantization; rate-distortion theory;
fLanguage
English
Journal_Title
Pattern Analysis and Machine Intelligence, IEEE Transactions on
Publisher
ieee
ISSN
0162-8828
Type
jour
DOI
10.1109/TPAMI.1983.4767432
Filename
4767432
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