TY - GEN
T1 - Reflectance and light source position estimation from a sparse set of images
AU - Li, Fasheng
AU - Qi, Yue
AU - Shen, Xukun
PY - 2007
Y1 - 2007
N2 - In this paper, we present a new method to estimate the surface reflectance property of an object, as well as the position of a light source. The proposed method allows spatial variation in the diffuse reflectance while assuming that the specular reflectance remains constant. Given a 3D geometric model of an object with specular reflection and a small set of images from a single view as input, our method simultaneously recovers the reflectance property and the light source position by using an iterative separating-fitting technique. We estimate the light source position by firstly fitting the reflectance property to the Lambertian model and then fitting the reflectance property to a more complex reflection model while separating the specular and diffuse components iteratively. By estimating the object's reflectance property and the light source position, we can freely render the object under arbitrary lighting conditions. Experimental results show the accuracy of our estimation method.
AB - In this paper, we present a new method to estimate the surface reflectance property of an object, as well as the position of a light source. The proposed method allows spatial variation in the diffuse reflectance while assuming that the specular reflectance remains constant. Given a 3D geometric model of an object with specular reflection and a small set of images from a single view as input, our method simultaneously recovers the reflectance property and the light source position by using an iterative separating-fitting technique. We estimate the light source position by firstly fitting the reflectance property to the Lambertian model and then fitting the reflectance property to a more complex reflection model while separating the specular and diffuse components iteratively. By estimating the object's reflectance property and the light source position, we can freely render the object under arbitrary lighting conditions. Experimental results show the accuracy of our estimation method.
UR - https://www.scopus.com/pages/publications/48349127580
U2 - 10.1109/DMAMH.2007.4414536
DO - 10.1109/DMAMH.2007.4414536
M3 - 会议稿件
AN - SCOPUS:48349127580
SN - 0769530656
SN - 9780769530659
T3 - Proceedings - 2nd Workshop on Digital Media and its Application in Museum and Heritage, DMAMH 2007
SP - 106
EP - 111
BT - Proceedings - 2nd Workshop on Digital Media and its Application in Museum and Heritage, DMAMH 2007
T2 - 2nd Workshop on Digital Media and its Application in Museum and Heritage, DMAMH 2007
Y2 - 10 December 2007 through 12 December 2007
ER -