Výsledky vyhľadávania - Computing methodologies → Linear algebra algorithms

  1. 1

    Pipirima: Predicting Patterns in Sparsity to Accelerate Matrix Algebra Autor Bakhtiar, Ubaid, Joo, Donghyeon, Asgari, Bahar

    Vydavateľské údaje: IEEE 22.06.2025
    “…While sparsity, a feature of data in many applications, provides optimization opportunities such as reducing unnecessary computations, data transfers, and…”
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  2. 2

    ReSMiPS: A ReRAM-based Sparse Mixed-precision Solver with Fast Matrix Reordering Algorithm Autor Fu, Yuyang, Li, Jiancong, Chen, Jia, Zhou, Zhiwei, Zhou, Houji, Peng, Wenlong, Li, Yi, Miao, Xiangshui

    Vydavateľské údaje: IEEE 22.06.2025
    “…The solution of sparse matrix equations is essential in scientific computing. However, traditional solvers on digital computing platforms are limited by memory bottlenecks in largescale sparse matrix storage and computation…”
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  3. 3

    SpV8: Pursuing Optimal Vectorization and Regular Computation Pattern in SpMV Autor Li, Chenyang, Xia, Tian, Zhao, Wenzhe, Zheng, Nanning, Ren, Pengju

    Vydavateľské údaje: IEEE 05.12.2021
    “… We evaluate SpV8 on Intel Xeon CPU and compare with multiple state-of-art SpMV algorithms using 71 sparse matrices…”
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  4. 4

    Harnessing GPU Tensor Cores for Fast FP16 Arithmetic to Speed up Mixed-Precision Iterative Refinement Solvers Autor Haidar, Azzam, Tomov, Stanimire, Dongarra, Jack, Higham, Nicholas J.

    Vydavateľské údaje: IEEE 01.11.2018
    “…Low-precision floating-point arithmetic is a powerful tool for accelerating scientific computing applications, especially those in artificial intelligence…”
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  5. 5

    FSPA: An FeFET-based Sparse Matrix-Dense Vector Multiplication Accelerator Autor Zhang, Xiaoyu, Li, Zerun, Liu, Rui, Chen, Xiaoming, Han, Yinhe

    Vydavateľské údaje: IEEE 09.07.2023
    “… The performance of traditional SpMV accelerators is bounded by memory. In-memory computing (IMC) is a promising technique to alleviate the memory bottleneck…”
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    On the Parallel I/O Optimality of Linear Algebra Kernels: Near-Optimal Matrix Factorizations Autor Kwasniewski, Grzegorz, Kabic, Marko, Ben-Nun, Tal, Ziogas, Alexandros Nikolaos, Saethre, Jens Eirik, Gaillard, Andre, Schneider, Timo, Besta, Maciej, Kozhevnikov, Anton, VandeVondele, Joost, Hoefler, Torsten

    ISSN: 2167-4337
    Vydavateľské údaje: ACM 14.11.2021
    “… We first establish a theoretical framework for deriving parallel I/O lower bounds for linear algebra kernels, and then utilize its insights to derive Cholesky and LU schedules, both communicating N^{3}/(P\sqrt{M…”
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  7. 7

    Solvability of Matrix-Exponential Equations Autor Ouaknine, Joel, Pouly, Amaury, Sousa-Pinto, Joao, Worrell, James

    ISBN: 9781450343916, 1450343910
    Vydavateľské údaje: New York, NY, USA ACM 05.07.2016
    “… Our results have applications to reachability problems for linear hybrid automata. Our decidability proof relies on a number of theorems from algebraic and transcendental…”
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  8. 8

    Many-Body Electronic Correlation Energy using Krylov Subspace Linear Solvers Autor Shah, Shikhar, Zhang, Boqin, Huang, Hua, Pask, John E., Suryanarayana, Phanish, Chow, Edmond

    Vydavateľské údaje: IEEE 17.11.2024
    “…This paper presents the formulation and implementation of a high performance algorithm to compute the many-body electronic correlation energy via the random-phase approximation within density functional theory…”
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  9. 9

    An approximate computing technique for reducing the complexity of a direct-solver for sparse linear systems in real-time video processing Autor Schaffner, Michael, Gurkaynak, Frank K., Smolic, Aljosa, Kaeslin, Hubert, Benini, Luca

    ISSN: 0738-100X
    Vydavateľské údaje: IEEE 01.06.2014
    “…Many video processing algorithms are formulated as least-squares problems that result in large, sparse linear systems…”
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  10. 10

    Steady-state dynamic temperature analysis and reliability optimization for embedded multiprocessor systems Autor Ukhov, Ivan, Bao, Min, Eles, Petru, Peng, Zebo

    ISBN: 1450311997, 9781450311991
    ISSN: 0738-100X
    Vydavateľské údaje: New York, NY, USA ACM 03.06.2012
    Vydané v DAC Design Automation Conference 2012 (03.06.2012)
    “…In this paper we propose an analytical technique for the steady-state dynamic temperature analysis (SSDTA) of multiprocessor systems with periodic…”
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  11. 11

    Hello SME! Generating Fast Matrix Multiplication Kernels Using the Scalable Matrix Extension Autor Remke, Stefan, Breuer, Alexander

    Vydavateľské údaje: IEEE 17.11.2024
    “…Modern central processing units (CPUs) feature single-instruction, multiple-data pipelines to accelerate compute-intensive floating-point and fixed-point…”
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  12. 12

    Boosting Graph Spectral Sparsification via Parallel Sparse Approximate Inverse of Cholesky Factor Autor Chen, Baiyu, Liu, Zhiqiang, Zhang, Yibin, Yu, Wenjian

    ISSN: 2153-697X
    Vydavateľské údaje: IEEE 22.01.2024
    “…With the advance of very-large-scale-integrated (VLSI) systems, fast and efficient algorithms for solving equations of Laplacian matrices are increasingly significant…”
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  13. 13

    GPU Accelerated Sparse Cholesky Factorization Autor Karsavuran, M. Ozan, Ng, Esmond G., Peyton, Barry W.

    Vydavateľské údaje: IEEE 17.11.2024
    “…The solution of sparse symmetric positive definite linear systems is an important computational kernel in large-scale scientific and engineering modeling and simulation…”
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  14. 14

    High-Performance Eigensolver Combining EigenExa and Iterative Refinement Autor Uchino, Yuki, Imamura, Toshiyuki

    Vydavateľské údaje: IEEE 17.11.2024
    “… Eigenvalue decomposition is ubiquitous in simulations. Various eigensolvers for computing approximations have been developed thus far…”
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  15. 15

    Implementing sparse matrix-vector multiplication on throughput-oriented processors Autor Bell, Nathan, Garland, Michael

    ISBN: 1605587443, 9781605587448
    ISSN: 2167-4329
    Vydavateľské údaje: New York, NY, USA ACM 14.11.2009
    “…Sparse matrix-vector multiplication (SpMV) is of singular importance in sparse linear algebra…”
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  16. 16

    COPA: Constrained PARAFAC2 for Sparse & Large Datasets Autor Afshar, Ardavan, Perros, Ioakeim, Papalexakis, Evangelos E, Searles, Elizabeth, Ho, Joyce, Sun, Jimeng

    ISSN: 2155-0751
    Vydavateľské údaje: United States 01.10.2018
    “…PARAFAC2 has demonstrated success in modeling irregular tensors, where the tensor dimensions vary across one of the modes. An example scenario is modeling…”
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  17. 17

    Scaling lattice QCD beyond 100 GPUs Autor Babich, R., Clark, M. A., Joó, B., Shi, G., Brower, R. C., Gottlieb, S.

    ISBN: 145030771X, 9781450307710
    ISSN: 2167-4329
    Vydavateľské údaje: New York, NY, USA ACM 12.11.2011
    “…Over the past five years, graphics processing units (GPUs) have had a transformational effect on numerical lattice quantum chromodynamics (LQCD) calculations…”
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    Geometry-oblivious FMM for compressing dense SPD matrices Autor Yu, Chenhan D., Levitt, James, Reiz, Severin, Biros, George

    ISBN: 9781450351140, 145035114X
    ISSN: 2167-4337
    Vydavateľské údaje: New York, NY, USA ACM 12.11.2017
    “…We present GOFMM (geometry-oblivious FMM), a novel method that creates a hierarchical low-rank approximation, or "compression," of an arbitrary dense symmetric…”
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    On monte carlo hybrid methods for linear algebra Autor Dávila, Diego, Alexandrov, Vassil, Esquivel-Flores, Oscar A.

    ISBN: 1509052224, 9781509052226
    Vydavateľské údaje: Piscataway, NJ, USA IEEE Press 13.11.2016
    “…This paper presents an enhanced hybrid (e.g. stochastic/ deterministic) method for Linear Algebra based on bulding an efficient stochastic preconditioner and then solving the corresponding System of Linear Algebraic Equations (SLAE…”
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    Combining Models and Guided Empirical Search to Optimize for Multiple Levels of the Memory Hierarchy Autor Chen, Chun, Chame, Jacqueline, Hall, Mary

    ISBN: 9780769522982, 076952298X
    Vydavateľské údaje: Washington, DC, USA IEEE Computer Society 20.03.2005
    “…This paper describes an algorithm for simultaneously optimizing across multiple levels of the memory hierarchy for dense-matrix computations…”
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