Realistic photometric stereo using partial differential irradiance equation ratios

Mecca R, Rodola E, Cremers D (2015)


Publication Type: Journal article

Publication year: 2015

Journal

Book Volume: 51

Pages Range: 8-16

DOI: 10.1016/j.cag.2015.05.020

Abstract

Shape from shading with multiple light sources is an active research area and a diverse range of approaches have been proposed in the last decades. However, devising a robust reconstruction technique still remains a challenging goal due to several highly non-linear physical factors being involved in the image acquisition process. Recent attempts at tackling the problem via photometric stereo rely on simplified hypotheses in order to make the problem solvable. Light propagation is still commonly assumed to be uniformly oriented, and the BRDF assumed to be diffuse, with limited interest for materials giving specular reflection. Taking into account realistic point light sources, in this paper we introduce a well-posed formulation based on partial differential equations for both diffuse and specular shading models. We base our derivation on the popular approach of image ratios, which makes the model independent from photometric invariants. The practical effectiveness of our method is confirmed with a wide range of experiments on both synthetic and real data, where we compare favorably to the state of the art.

Involved external institutions

How to cite

APA:

Mecca, R., Rodola, E., & Cremers, D. (2015). Realistic photometric stereo using partial differential irradiance equation ratios. Computers & Graphics, 51, 8-16. https://dx.doi.org/10.1016/j.cag.2015.05.020

MLA:

Mecca, R., Emanuele Rodola, and D. Cremers. "Realistic photometric stereo using partial differential irradiance equation ratios." Computers & Graphics 51 (2015): 8-16.

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