Accelerating Matrix-Vector Multiplication on Hierarchical Matrices Using Graphical Processing Units
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David E. Keyes | Hatem Ltaief | Alexander Litvinenko | Ahmad Abdelfattah | Wajih Halim Boukaram | D. Keyes | H. Ltaief | A. Litvinenko | W. Boukaram | A. Abdelfattah
[1] W. Hackbusch. A Sparse Matrix Arithmetic Based on $\Cal H$-Matrices. Part I: Introduction to ${\Cal H}$-Matrices , 1999, Computing.
[2] R. Kriemann,et al. Mathematik in den Naturwissenschaften Leipzig Parallel H-Matrix Arithmetics on Shared Memory Systems , 2004 .
[3] Alexander Litvinenko,et al. Kriging and Spatial Design Accelerated by Orders of Magnitude: Combining Low-Rank Covariance Approximations with FFT-Techniques , 2013, Mathematical Geosciences.
[4] Ronald Kriemann,et al. $${{\fancyscript{H}}} $$H-LU factorization on many-core systems , 2013, Comput. Vis. Sci..
[5] Hermann G. Matthies,et al. Application of hierarchical matrices for computing the Karhunen–Loève expansion , 2009, Computing.
[6] Ahmad Abdelfattah,et al. Accelerating Scientific Applications using High Performance Dense and Sparse Linear Algebra Kernels on GPUs , 2015 .
[7] Sergej Rjasanow,et al. Adaptive Low-Rank Approximation of Collocation Matrices , 2003, Computing.
[8] Ronald Kriemann,et al. H-LU Factorization on Many-Core Systems , 2014 .
[9] Jack Dongarra,et al. Numerical linear algebra on emerging architectures: The PLASMA and MAGMA projects , 2009 .