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dc.contributor.author |
Grundland, M. |
|
dc.contributor.author |
Patera, J. |
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dc.contributor.author |
Masáková, Z. |
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dc.contributor.author |
Dodgson, N.A. |
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dc.date.accessioned |
2019-02-19T17:38:37Z |
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dc.date.available |
2019-02-19T17:38:37Z |
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dc.date.issued |
2009 |
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dc.identifier.citation |
Image Sampling with Quasicrystals / M. Grundland, J. Patera, Z. Masáková, N.A. Dodgson // Symmetry, Integrability and Geometry: Methods and Applications. — 2009. — Т. 5. — Бібліогр.: 51 назв. — англ. |
uk_UA |
dc.identifier.issn |
1815-0659 |
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dc.identifier.other |
2000 Mathematics Subject Classification: 20H15; 52C23; 68U99; 82D25 |
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dc.identifier.uri |
http://dspace.nbuv.gov.ua/handle/123456789/149141 |
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dc.description.abstract |
We investigate the use of quasicrystals in image sampling. Quasicrystals produce space-filling, non-periodic point sets that are uniformly discrete and relatively dense, thereby ensuring the sample sites are evenly spread out throughout the sampled image. Their self-similar structure can be attractive for creating sampling patterns endowed with a decorative symmetry. We present a brief general overview of the algebraic theory of cut-and-project quasicrystals based on the geometry of the golden ratio. To assess the practical utility of quasicrystal sampling, we evaluate the visual effects of a variety of non-adaptive image sampling strategies on photorealistic image reconstruction and non-photorealistic image rendering used in multiresolution image representations. For computer visualization of point sets used in image sampling, we introduce a mosaic rendering technique. |
uk_UA |
dc.language.iso |
en |
uk_UA |
dc.publisher |
Інститут математики НАН України |
uk_UA |
dc.relation.ispartof |
Symmetry, Integrability and Geometry: Methods and Applications |
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dc.title |
Image Sampling with Quasicrystals |
uk_UA |
dc.type |
Article |
uk_UA |
dc.status |
published earlier |
uk_UA |
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