2008 |
11 | | Taro Konda,
Hiroki Toyokawa,
Yoshimasa Nakamura:
Evaluations of Parallel Double Divide and Conquer on a 16?core Computer.
PDPTA 2008: 790-796 |
2007 |
10 | | Masami Takata,
Kinji Kimura,
Masashi Iwasaki,
Yoshimasa Nakamura:
Algorithms for Generating Bidiagonal Test Matrices.
PDPTA 2007: 732-738 |
9 | EE | Yusaku Yamamoto,
Takeshi Fukaya,
Takashi Uneyama,
Masami Takata,
Kinji Kimura,
Masashi Iwasaki,
Yoshimasa Nakamura:
Accelerating the Singular Value Decomposition of Rectangular Matrices with the CSX600 and the Integrable SVD.
PaCT 2007: 340-345 |
8 | | Taro Konda,
Hiroaki Tsuboi,
Masami Takata,
Masashi Iwasaki,
Yoshimasa Nakamura:
Parallelism of double divide and conquer algorithm for singular value decomposition.
Parallel and Distributed Computing and Networks 2007: 367-372 |
2006 |
7 | | Taro Konda,
Masami Takata,
Masashi Iwasaki,
Yoshimasa Nakamura:
A newsingular value decomposition algorithmsuited to parallelization and preliminary results.
ACST 2006: 79-84 |
6 | | Hiroaki Tsuboi,
Taro Konda,
Masami Takata,
Kinji Kimura,
Masashi Iwasaki,
Yoshimasa Nakamura:
Evaluation of a New Eigen Decomposition Algorithm for Symmetric Tridiagonal Matrices.
PDPTA 2006: 832-838 |
5 | | Masami Takata,
Taro Konda,
Kinji Kimura,
Yoshimasa Nakamura:
Verification of dLVv Transformation for Singular Vector Computation with High Accuracy.
PDPTA 2006: 881-887 |
4 | | Taro Konda,
Hiroaki Tsuboi,
Masami Takata,
Masashi Iwasaki,
Yoshimasa Nakamura:
Preliminary Result of Parallel Double Divide and Conquer.
PDPTA 2006: 888-894 |
3 | | Masami Takata,
Kinji Kimura,
Masashi Iwasaki,
Yoshimasa Nakamura:
Performance of a New Scheme for Bidiagonal Singular Value Decomposition of Large Scale.
Parallel and Distributed Computing and Networks 2006: 304-309 |
2005 |
2 | | Masami Takata,
Masashi Iwasaki,
Kinji Kimura,
Yoshimasa Nakamura:
An Evaluation of Singular Value Computation by the Discrete Lotka-Volterra System.
PDPTA 2005: 410-416 |
2004 |
1 | | Masami Takata,
Tomomi Yamaguchi,
Chiemi Watanabe,
Yoshimasa Nakamura,
Kazuki Joe:
A Multi-Objective Genetic Algorithm for Program Partitioning and Data Distribution Using TVRG.
PDPTA 2004: 345-350 |