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Hitoshi Yanami
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2020 – today
- 2022
- [j6]Noriyasu Aso, Hitoshi Yanami, Masatoshi Ogawa:
Automatic Parametric Modeling Technique for Structural Design Standardization. IEEE Access 10: 81031-81041 (2022) - [c14]Natsuki Morita, Hayato Dan, Katsumi Homma, Hitoshi Yanami, Shota Suginouchi, Mizuho Sato, Hajime Mizuyama, Masatoshi Ogawa:
Equilibrium Search Technique Using Genetic Algorithm and Replicator Dynamics and Its Application to Food Supply Chain Model. KES-IDT 2022: 363-374 - [c13]Yoshihiro Okawa, Tomotake Sasaki, Hitoshi Yanami, Toru Namerikawa:
Safe Exploration Method for Reinforcement Learning Under Existence of Disturbance. ECML/PKDD (4) 2022: 132-147 - [i1]Yoshihiro Okawa, Tomotake Sasaki, Hitoshi Yanami, Toru Namerikawa:
Safe Exploration Method for Reinforcement Learning under Existence of Disturbance. CoRR abs/2209.15452 (2022)
2010 – 2019
- 2015
- [c12]Hitoshi Yanami, Tomotake Sasaki, Junji Kaneko, Shinji Hara, Yafei Wang, Satoshi Moriyama, Hidenao Iwane:
State-dependent virtual hierarchization of batteries for realizing a glocal control in energy network systems and its application to peak power reduction in office. ASCC 2015: 1-6 - 2014
- [c11]Hidenao Iwane, Hitoshi Yanami, Hirokazu Anai:
SyNRAC: A Toolbox for Solving Real Algebraic Constraints. ICMS 2014: 518-522 - 2013
- [j5]Hidenao Iwane, Hitoshi Yanami, Hirokazu Anai, Kazuhiro Yokoyama:
An effective implementation of symbolic-numeric cylindrical algebraic decomposition for quantifier elimination. Theor. Comput. Sci. 479: 43-69 (2013) - 2011
- [j4]Hidenao Iwane, Hitoshi Yanami, Hirokazu Anai:
A Symbolic-Numeric Approach to Multi-Objective Optimization in Manufacturing Design. Math. Comput. Sci. 5(3): 315-334 (2011) - [c10]Hidenao Iwane, Hitoshi Yanami, Hirokazu Anai:
An effective implementation of a symbolic-numeric cylindrical algebraic decomposition for optimization problems. SNC 2011: 168-177
2000 – 2009
- 2009
- [c9]Hidenao Iwane, Hitoshi Yanami, Hirokazu Anai, Kazuhiro Yokoyama:
An effective implementation of a symbolic-numeric cylindrical algebraic decomposition for quantifier elimination. SNC 2009: 55-64 - 2007
- [j3]Noriko Hyodo, Myunghoon Hong, Hitoshi Yanami, Shinji Hara, Hirokazu Anai:
Solving and visualizing nonlinear parametric constraints in control based on quantifier elimination. Appl. Algebra Eng. Commun. Comput. 18(6): 497-512 (2007) - [j2]Hitoshi Yanami, Hirokazu Anai:
SyNRAC: a maple toolbox for solving real algebraic constraints. ACM Commun. Comput. Algebra 41(3): 112-113 (2007) - [j1]Hitoshi Yanami, Hirokazu Anai:
The Maple package SyNRAC and its application to robust control design. Future Gener. Comput. Syst. 23(5): 721-726 (2007) - 2006
- [c8]Hitoshi Yanami, Hirokazu Anai:
Development of SyNARC. International Conference on Computational Science (2) 2006: 462-469 - 2005
- [c7]Hitoshi Yanami, Hirokazu Anai:
SyNRAC: A Maple Toolbox for Solving Real Algebraic Constraints. Algorithmic Algebra and Logic 2005: 275-279 - [c6]Hitoshi Yanami, Hirokazu Anai:
Development of SyNRAC. International Conference on Computational Science (3) 2005: 602-610 - 2004
- [c5]Hitoshi Yanami, Hirokazu Anai:
Development of SyNRAC-Formula Description and New Functions. International Conference on Computational Science 2004: 286-294 - 2003
- [c4]Hirokazu Anai, Hitoshi Yanami:
SyNRAC: A Maple-Package for Solving Real Algebraic Constraints. International Conference on Computational Science 2003: 828-837 - 2002
- [c3]Hitoshi Yanami, Takeshi Shimoyama, Orr Dunkelman:
Differential and Linear Cryptanalysis of a Reduced-Round SC2000. FSE 2002: 34-48 - [c2]Hitoshi Yanami, Takeshi Shimoyama:
Differential Cryptanalysis of a Reduced-Round SEED. SCN 2002: 186-198 - 2001
- [c1]Takeshi Shimoyama, Hitoshi Yanami, Kazuhiro Yokoyama, Masahiko Takenaka, Kouichi Itoh, Jun Yajima, Naoya Torii, Hidema Tanaka:
The Block Cipher SC2000. FSE 2001: 312-327
Coauthor Index
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