Presentation
22 July 2019 Investigation of reflectance-based pigment classification in layered media (Conference Presentation)
Author Affiliations +
Abstract
Pigment identification and mapping gives us insight into an artists' material use, allows us to measure slow chemical changes in painted surfaces, and allows us to detect anachronistic uses of materials that can be associated with either forgeries or past restorations. Earlier work has demonstrated the potential of a dictionary-based reflectance approach for pigment classification. This technique identifies pigments by searching for the pigment combinations that best reproduce the measured reflectance curve. The prospect of pigment classification through modeling is attractive because it can be extended to a layered medium -- potentially opening a route to a depth-resolved pigment classification method. In this work, we investigate a layered pigment classification technique with a fused deep learning and optimization-based Kubelka-Munk framework. First, we discuss the efficacy of the algorithm in a thick, single-layer system. Specifically, we consider the impacts of layer thickness, total pigment concentration, and spectrally similar pigment combinations. Following a thorough discussion of the single layer problem, the system is generalized to multiple layers. Finally, as a concrete example, we use the two-layered system to demonstrate both the impacts of layer thickness and dictionary content on paint localization within the painting. Results of the algorithm are then shown for mock-up paintings for which the ground truth is known.
Conference Presentation
© (2019) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Lionel Fiske, Oliver Cossairt, Aggelos K. Katsaggelos, and Marc S. Walton "Investigation of reflectance-based pigment classification in layered media (Conference Presentation)", Proc. SPIE 11058, Optics for Arts, Architecture, and Archaeology VII, 110580E (22 July 2019); https://doi.org/10.1117/12.2525382
Advertisement
Advertisement
KEYWORDS
Reflectivity

Associative arrays

Chemical elements

Multilayers

X-ray fluorescence spectroscopy

RELATED CONTENT

Multilayer soft x-ray optics
Proceedings of SPIE (October 20 2014)
Design And Fabrication Of Heat Resistant Multilayers
Proceedings of SPIE (April 09 1987)
La/B4C multilayer mirrors for x-rays below 190 eV
Proceedings of SPIE (November 14 2001)
Status of small d spacing x ray multilayer development at...
Proceedings of SPIE (December 24 2002)
Multilayer reflectors for the "water window"
Proceedings of SPIE (February 01 1991)

Back to Top