Patch-based Monte Carlo Terrain Upsampling via Gaussian Laplacian Pyramids

Author:

Li Wanwan1ORCID

Affiliation:

1. University of South Florida, USA

Publisher

ACM

Reference48 articles.

1. Saeed Anwar and Nick Barnes . 2020. Densely residual laplacian super-resolution . IEEE Transactions on Pattern Analysis and Machine Intelligence ( 2020 ). Saeed Anwar and Nick Barnes. 2020. Densely residual laplacian super-resolution. IEEE Transactions on Pattern Analysis and Machine Intelligence (2020).

2. Oscar Argudo , Antoni Chica , and Carlos Andujar . 2018. Terrain super-resolution through aerial imagery and fully convolutional networks . In Computer Graphics Forum, Vol. 37 . Wiley Online Library , 101–110. Oscar Argudo, Antoni Chica, and Carlos Andujar. 2018. Terrain super-resolution through aerial imagery and fully convolutional networks. In Computer Graphics Forum, Vol. 37. Wiley Online Library, 101–110.

3. Simulation, modeling and authoring of glaciers

4. Arul Asirvatham and Hugues Hoppe . 2005. Terrain rendering using GPU-based geometry clipmaps. GPU gems 2, 2 ( 2005 ), 27–46. Arul Asirvatham and Hugues Hoppe. 2005. Terrain rendering using GPU-based geometry clipmaps. GPU gems 2, 2 (2005), 27–46.

5. Matthew Beardall Mckay Farley Darius Ouderkirk Jeremy Smith Michael Jones and Parris K Egbert. 2007. Goblins by SpheroidalWeathering.. In NPH. 7–14. Matthew Beardall Mckay Farley Darius Ouderkirk Jeremy Smith Michael Jones and Parris K Egbert. 2007. Goblins by SpheroidalWeathering.. In NPH. 7–14.

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