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Adaptive Progressive Photon Mapping

delete2013-04-30
delete48
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A
Anton Kaplanyan *
C
Carsten Dachsbacher
DOI:10.1145/2451236.2451242delete
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Abstract

Abstract

En 中文
This article introduces a novel locally adaptive progressive photon mapping technique which optimally balances noise and bias in rendered images to minimize the overall error. It is the result of an analysis of the radiance estimation in progressive photon mapping. As a first step, we establish a connection to the field of recursive estimation and regression in statistics and derive the optimal estimation parameters for the asymptotic convergence of existing approaches. Next, we show how to reformulate photon mapping as a spatial regression in the measurement equation of light transport. This reformulation allows us to derive a novel data-driven bandwidth selection technique for estimating a pixel's measurement. The proposed technique possesses attractive convergence properties with finite numbers of samples, which is important for progressive rendering, and it also provides better results for quasi-converged images. Our results show the practical benefits of using our adaptive method.
Keywords:
Algorithms
Experimentation
Performance
Theory
Global illumination
photon mapping
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Journal

ACM Transactions on Graphics cover
ACM Transactions on Graphics
IF:
9.5
Papers:
4.7K
Citations:
3.6W

Organization

H
Helmholtz Association
Scholars:
13.2W
Papers: 10.7W
Citations: 145