| 2009 | ||
|---|---|---|
| 22 | Katsutoshi Hirayama, Toshihiro Matsui, Makoto Yokoo: Adaptive price update in distributed Lagrangian relaxation protocol. AAMAS (2) 2009: 1033-1040 | |
| 21 | Toshihiro Matsui, Marius-Calin Silaghi, Katsutoshi Hirayama, Makoto Yokoo, Hiroshi Matsuo: Directed soft arc consistency in pseudo trees. AAMAS (2) 2009: 1065-1072 | |
| 20 | Edwardo Murakami, Toshihiro Matsui: Human Control Modeling Based on Multimodal Sensory Feedback Information. HCI (16) 2009: 192-201 | |
| 2008 | ||
| 19 | Toshihiro Matsui, Hiroshi Matsuo, Marius Silaghi, Katsutoshi Hirayama, Makoto Yokoo: Resource Constrained Distributed Constraint Optimization with Virtual Variables. AAAI 2008: 120-125 | |
| 18 | Toshihiro Matsui, Marius Silaghi, Katsutoshi Hirayama, Makoto Yokoo, Hiroshi Matsuo: Resource constrained distributed constraint optimization using resource constraint free pseudo-tree. AAMAS (3) 2008: 1405-1408 | |
| 17 | Maobing Dai, Toshihiro Matsui, Yutaka Ishikawa: A Light Lock Management Mechanism for Optimizing Real-Time and Non-Real-Time Performance in Embedded Linux. EUC (1) 2008: 162-168 | |
| 16 | Prashant Doshi, Toshihiro Matsui, Marius Silaghi, Makoto Yokoo, Markus Zanker: Distributed Private Constraint Optimization. IAT 2008: 277-281 | |
| 15 | Marius-Calin Silaghi, Robert N. Lass, Evan Sultanik, William C. Regli, Toshihiro Matsui, Makoto Yokoo: Constant Cost of the Computation-Unit in Efficiency Graphs for DCOP Solvers. IAT 2008: 380-384 | |
| 14 | Toshihiro Matsui, Hiroshi Matsuo: A Formalization for Distributed Cooperative Sensor Resource Allocation. KES-AMSTA 2008: 292-301 | |
| 2007 | ||
| 13 | Toshihiro Matsui, Hiroshi Matsuo: Efficient Methods for Pseudo-tree Based Distributed Best First Search. IMECS 2007: 77-82 | |
| 2006 | ||
| 12 | Satoshi Kagami, Simon Thompson, Yoshifumi Nishida, Tadashi Enomoto, Toshihiro Matsui: Home Robot Service by Ceiling Ultrasonic Locator and Microphone Array. ICRA 2006: 3171-3176 | |
| 11 | Keiji Yamamoto, Yutaka Ishikawa, Toshihiro Matsui: Portable Execution Time Analysis Method. RTCSA 2006: 267-270 | |
| 2005 | ||
| 10 | Toshihiro Matsui, Hiroshi Matsuo, Akira Iwata: Efficient Methods for Asynchronous Distributed Constraint Optimization Algorithm. Artificial Intelligence and Applications 2005: 727-732 | |
| 9 | Toshihiro Matsui, Hiroshi Matsuo: Applying Distributed Constraint Optimization Method to Dynamic Problem. Computational Intelligence 2005: 170-175 | |
| 8 | Toshihiro Matsui, Hirohisa Hirukawa, Yutaka Ishikawa, Nobuyuki Yamasaki, Satoshi Kagami, Fumio Kanehiro, Hajime Saito, Tetsuya Inamura: Distributed Real-Time Processing for Humanoid Robots. RTCSA 2005: 205-210 | |
| 2001 | ||
| 7 | Toshihiro Matsui, Hideki Asoh, Futoshi Asano, John Fry, Isao Hara, Yoichi Motomura, Katsunobu Itou: Spoken Language Interface of the Jijo-2 Office Robot. ISRR 2001: 307-317 | |
| 6 | Hideki Asoh, Nikos A. Vlassis, Yoichi Motomura, Futoshi Asano, Isao Hara, Satoru Hayamizu, Katsunobu Itou, Takio Kurita, Toshihiro Matsui, Roland Bunschoten, Ben J. A. Kröse: Jijo-2: An Office Robot that Communicates and Learns. IEEE Intelligent Systems 16(5): 46-55 (2001) | |
| 2000 | ||
| 5 | Toshihiro Matsui, Hiroshi Matsuo, Akira Iwata: A Region Selecting Method Which Performs Observation and Action in the Multi-resolution Environment. PRICAI 2000: 136-145 | |
| 1999 | ||
| 4 | Toshihiro Matsui, Hideki Asoh, John Fry, Yoichi Motomura, Futoshi Asano, Takio Kurita, Isao Hara, Nobuyuki Otsu: Integrated Natural Spoken Dialogue System of Jijo-2 Mobile Robot for Office Services. AAAI/IAAI 1999: 621-627 | |
| 1998 | ||
| 3 | Koji Horikawa, Hideki Asoh, Jun Tani, Toshihiro Matsui, Masayoshi Kakikura: Emergence of Expert Modules for Mobile Robot Navigation from a Mixture of Elman Networks. ICONIP 1998: 256-259 | |
| 2 | Hideki Asoh, Isao Hara, Toshihiro Matsui: A Structured Dynamic Multi-Agent Architecture for Controlling Mobile Office-Conversant Robot. ICRA 1998: 1552-1557 | |
| 1997 | ||
| 1 | Hideki Asoh, Satoru Hayamizu, Isao Hara, Yoichi Motomura, Shotaro Akaho, Toshihiro Matsui: Socially Embedded Learning of the Office-Conversant Mobil Robot Jijo-2. IJCAI (2) 1997: 880-887 | |