In this paper we present in a unified approach Shape-from-Shading models under orthographic projection for non-Lambertian surfaces and compare them with the classical Lambertian model. Those non-Lambertian models have been proposed in the literature by various authors in order to take into account more realistic surfaces such as rough and specular surfaces. The advantage of our unified mathematical model is the possibility to easily modify a single differential model to various situations just changing some control parameters. Moreover, the numerical approximation we propose is valid for that general model and can be easily adapted to the real situation. Finally, we compare the models on some benchmarks including real and synthetic images.

A Comparison of Non-Lambertian Models for the Shape-from-Shading Problem / Tozza, Silvia; Falcone, Maurizio. - (2016), pp. 15-42. [10.1007/978-3-319-24726-7_2]

A Comparison of Non-Lambertian Models for the Shape-from-Shading Problem

TOZZA, SILVIA
;
2016

Abstract

In this paper we present in a unified approach Shape-from-Shading models under orthographic projection for non-Lambertian surfaces and compare them with the classical Lambertian model. Those non-Lambertian models have been proposed in the literature by various authors in order to take into account more realistic surfaces such as rough and specular surfaces. The advantage of our unified mathematical model is the possibility to easily modify a single differential model to various situations just changing some control parameters. Moreover, the numerical approximation we propose is valid for that general model and can be easily adapted to the real situation. Finally, we compare the models on some benchmarks including real and synthetic images.
2016
978-3-319-24724-3
978-3-319-24726-7
A Comparison of Non-Lambertian Models for the Shape-from-Shading Problem / Tozza, Silvia; Falcone, Maurizio. - (2016), pp. 15-42. [10.1007/978-3-319-24726-7_2]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/759594
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