hal-00695670, version 1
Gabor Noise by Example
ACM Transactions on Graphics (TOG) - SIGGRAPH 2012 Conference Proceedings 31, 4 (2012) Article No. 73
Abstract: Procedural noise is a fundamental tool in Computer Graphics. However, designing noise patterns is hard. In this paper, we present Gabor noise by example, a method to estimate the parameters of bandwidth-quantized Gabor noise, a procedural noise function that can generate noise with an arbitrary power spectrum, from exemplar Gaussian textures, a class of textures that is completely characterized by their power spectrum. More specifically, we introduce (i) bandwidth-quantized Gabor noise, a generalization of Gabor noise to arbitrary power spectra that enables robust parameter estimation and efficient procedural evaluation; (ii) a robust parameter estimation technique for quantized-bandwidth Gabor noise, that automatically decomposes the noisy power spectrum estimate of an exemplar into a sparse sum of Gaussians using non-negative basis pursuit denoising; and (iii) an efficient procedural evaluation scheme for bandwidth-quantized Gabor noise, that uses multi-grid evaluation and importance sampling of the kernel parameters. Gabor noise by example preserves the traditional advantages of procedural noise, including a compact representation and a fast on-the-fly evaluation, and is mathematically well-founded. See project page at : http://graphics.cs.kuleuven.be/publications/GLLD12GNBE/
- 1:
- CNRS : UMR8145 – Université Paris V - Paris Descartes
- 2:
- Katholieke Universiteit Leuven
- 3:
- INRIA – CNRS : UMR7503 – Université de Lorraine
- 4:
- INRIA
- Domain : Computer Science/Computer Graphics and Virtual Reality
- Keywords : procedural noise – Gaussian texture – Gaussian random field – power spectrum estimation – non-negative basis pursuit denoising – decorrelated color space
- Internal note : MAP5 2012-14
- hal-00695670, version 1
- http://hal.archives-ouvertes.fr/hal-00695670
- oai:hal.archives-ouvertes.fr:hal-00695670
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- Submitted on: Wednesday, 9 May 2012 15:48:29
- Updated on: Tuesday, 27 November 2012 15:31:45



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