TY - JOUR
T1 - K-clustered tensor approximation
T2 - A sparse multilinear model for real-time rendering
AU - Tsai, Yu Ting
AU - Shih, Zen-Chung
PY - 2012/5
Y1 - 2012/5
N2 - With the increasing demands for photo-realistic image synthesis in real time, we propose a sparse multilinear model, which is named K-Clustered Tensor Approximation (K-CTA), to efficiently analyze and approximate large-scale multidimensional visual datasets, so that both storage space and rendering time are substantially reduced. K-CTA not only extends previous work on Clustered Tensor Approximation (CTA) to exploit inter-cluster coherence, but also allows a compact and sparse representation for high-dimensional datasets with just a few low-order factors and reduced multidimensional cluster core tensors. Thus, K-CTA can be regarded as a sparse extension of CTA and amultilinear generalization of sparse representation. Experimental results demonstrate that K-CTA can accurately approximate spatially varying visual datasets, such as bidirectional texture functions, view-dependent occlusion texture functions, and biscale radiance transfer functions for efficient rendering in real-time applications.
AB - With the increasing demands for photo-realistic image synthesis in real time, we propose a sparse multilinear model, which is named K-Clustered Tensor Approximation (K-CTA), to efficiently analyze and approximate large-scale multidimensional visual datasets, so that both storage space and rendering time are substantially reduced. K-CTA not only extends previous work on Clustered Tensor Approximation (CTA) to exploit inter-cluster coherence, but also allows a compact and sparse representation for high-dimensional datasets with just a few low-order factors and reduced multidimensional cluster core tensors. Thus, K-CTA can be regarded as a sparse extension of CTA and amultilinear generalization of sparse representation. Experimental results demonstrate that K-CTA can accurately approximate spatially varying visual datasets, such as bidirectional texture functions, view-dependent occlusion texture functions, and biscale radiance transfer functions for efficient rendering in real-time applications.
KW - Multidimensional data analysis
KW - Real-time rendering
KW - Sparse representation
KW - Tensor approximation
UR - http://www.scopus.com/inward/record.url?scp=84863453719&partnerID=8YFLogxK
U2 - 10.1145/2167076.2167077
DO - 10.1145/2167076.2167077
M3 - Article
AN - SCOPUS:84863453719
SN - 0730-0301
VL - 31
JO - ACM Transactions on Graphics
JF - ACM Transactions on Graphics
IS - 3
M1 - 19
ER -