Unbiased sampling techniques for image synthesis

Author:

Kirk David1,Arvo James2

Affiliation:

1. California Institute of Technology, Computer Graphics 350-74, Pasadena, CA

2. Program of Computer Graphics, Cornell University, Ithaca, NY

Abstract

We examine a class of adaptive sampling techniques employed in image synthesis and show that those commonly used for efficient anti-aliasing are statistically biased. This bias is dependent upon the image function being sampled as well as the strategy for determining the number of samples to use. It is most prominent in areas of high contrast and is attributable to early stages of sampling systematically favoring one extreme or the other. If the expected outcome of the entire adaptive sampling algorithm is considered, we find that the bias of the early decisions is still present in the final estimator. We propose an alternative strategy for performing adaptive sampling that is unbiased but potentially more costly. We conclude that it may not always be practical to mitigate this source of bias, but as a source of error it should be considered when high accuracy and image fidelity are a central concern.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design,General Computer Science

Reference11 articles.

1. Arvo james and David Kirk "Particle Transport and Image Synthesis " Computer graphics 24(4) August 1990 pp 63-66. 10.1145/97880.97886 Arvo james and David Kirk "Particle Transport and Image Synthesis " Computer graphics 24(4) August 1990 pp 63-66. 10.1145/97880.97886

2. Antialiasing through stochastic sampling

3. Glassner Andrew S. "An oevrview of Ray Tracing " in An Introduction to Ray Tracing A S Glassner ed Academic Press New York 1989. Glassner Andrew S. "An oevrview of Ray Tracing " in An Introduction to Ray Tracing A S Glassner ed Academic Press New York 1989.

4. The rendering equation

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