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High-performance conjugate gradient performance improvement on the K computer., , и . Int. J. High Perform. Comput. Appl., 30 (1): 55-70 (2016)Low Byte/Flop Implementation of Iterative Solver for Sparse Matrices Derived from Stencil Computations., , , и . VECPAR, том 8969 из Lecture Notes in Computer Science, стр. 192-205. Springer, (2014)Performance improvement of the general-purpose CFD code FrontFlow/blue on the K computer., , , и . HPC Asia, стр. 171-182. ACM, (2018)K-scope: A Java-Based Fortran Source Code Analyzer with Graphical User Interface for Performance Improvement., , , , и . ICPP Workshops, стр. 434-443. IEEE Computer Society, (2012)An Empirical Study of Computation-Intensive Loops for Identifying and Classifying Loop Kernels: Full Research Paper., , , и . ICPE, стр. 361-372. ACM, (2017)Nonlinear Mode Decomposition and Reduced-Order Modeling for Three-Dimensional Cylinder Flow by Distributed Learning on Fugaku., , , , , и . ISC Workshops, том 12761 из Lecture Notes in Computer Science, стр. 122-137. Springer, (2021)A Case Study of the Running Time Fluctuation of Application., и . CANDAR, стр. 543-546. IEEE Computer Society, (2016)Poster: Planewave-Based First-Principles MD Calculation on 80, 000-node K-Computer., , , , , , и . SC Companion, стр. 1491-1492. IEEE Computer Society, (2012)Extending K-Scope Fortran Source Code Analyzer with Visualization of Performance Profiling Data and Remote Parsing of Source Code., , , и . HPCC/CSS/ICESS, стр. 866-873. IEEE, (2014)Fast scalable implicit solver with convergence of equation-based modeling and data-driven learning: earthquake city simulation on low-order unstructured finite element., , , , , , , , , и 3 other автор(ы). PASC, стр. 12:1-12:12. ACM, (2021)