Fast tile-based adaptive sampling with user-specified Fourier spectra
Florent Wachtel, Adrien Pilleboue, David Coeurjolly, Katherine Breeden, Gurprit Singh, Gaël Cathelin, Fernando de Goes, Mathieu Desbrun, Victor Ostromoukhov
In ACM Transactions on Graphics, 33(4), July 2014.
Abstract: We introduce a fast tile-based method for adaptive two-dimensional sampling with user-specified spectral properties. At the core of our approach is a deterministic, hierarchical construction of self-similar, equi-area, tri-hex tiles whose centroids have a spatial distribution free of spurious spectral peaks. A lookup table of sample points, computed offline using any existing point set optimizer to shape the samples' Fourier spectrum, is then used to populate the tiles. The result is a linear-time, adaptive, and high-quality sampling of arbitrary density functions that conforms to the desired spectral distribution, achieving a speed improvement of several orders of magnitude over current spectrum-controlled sampling methods.
Article URL: http://dx.doi.org/10.1145/2601097.2601107
BibTeX format:
@article{Wachtel:2014:FTA,
  author = {Florent Wachtel and Adrien Pilleboue and David Coeurjolly and Katherine Breeden and Gurprit Singh and Gaël Cathelin and Fernando de Goes and Mathieu Desbrun and Victor Ostromoukhov},
  title = {Fast tile-based adaptive sampling with user-specified Fourier spectra},
  journal = {ACM Transactions on Graphics},
  volume = {33},
  number = {4},
  pages = {56:1--56:11},
  month = jul,
  year = {2014},
}
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