The Creative Application of Halftone Technology

Article Preview

Abstract:

This paper has designed several creative application of Halftone stippling for the convenience of digital processing. It processes images to gain stippling images with different effects by using AM and FM; it also produces 3D Halftone art based on pits effect and raised effect of Relief; Besides, the paper also analyzes the processing method of stippling with paper-cutting effect and the center point’s homogenization treatment with Voronoi diagram. With easy and simple processing, the methods proposed in this paper can be used widely in such areas as landscape, wall decoration, product design, toy design and so on.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

521-524

Citation:

Online since:

January 2015

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Information on http: /wwom/964/15948/portfolio/the-twin-portraits-of-steve-jobs.

Google Scholar

[2] Information on https: /500px. com/benheine.

Google Scholar

[3] Victor Ostromoukhov, Roger D. Hersch. Artistic Screening. SIGGRAPH'95, 1995, pp.219-228.

Google Scholar

[4] Hung-Kuo Chu, etc. Halftone QR Codes. Transactions on Graphics, 32(6), 2013, Article 217.

Google Scholar

[5] Adrian Secord. Weighted Voronoi Stippling. ACM 2002, pp.37-43.

Google Scholar

[6] Stefan Hiller, Heino Hellwig, Oliver Deussen. Beyond Stippling- Methods for Distributing Objects on the Plane. EUROGRAPHICS 2003 . 22 (3), pp.515-522.

DOI: 10.1111/1467-8659.00699

Google Scholar

[7] Sung Ye Kim, etc. Stippling by Example. NPAR 2009: 41-50.

Google Scholar

[8] Hua Li, David Mould. Structure-Preser ving Stippling by Priority-Based Error Diffusion. Graphics Interface 2011. pp.127-134.

Google Scholar

[9] Michael Balzer, etc. Capacity-Constrained Point Distributions: A Variant of Lloyd's Method. ACM Transactions on Graphics, 28(3), Article 86, (2009).

Google Scholar

[10] Raanan Fattal. Blue-Noise Point Sampling using Kernel Density Model. ACM Transactions on Graphics, 30(4), Article 48, (2011).

DOI: 10.1145/2010324.1964943

Google Scholar

[11] Yin Xu, etc. Capacity-Cons trained Delau nay Triangulation for point distributions. Computers & Graphics 35 (2011) 510–516.

Google Scholar

[12] Fernando de Goes, etc. Blue Noise through Optimal Transport. ACM Transactions on Graphics, 31(6), Article 171, (2012).

Google Scholar