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Kaiji Sato
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2020 – today
- 2024
- [j10]Mizuki Takeda, Kaiji Sato:
Importance of Mutual Communication Through a Simple User Interface in Care Robots. IEEE Access 12: 91863-91872 (2024) - 2023
- [j9]Mizuki Takeda, Kaiji Sato:
Training Data Generation Using Human Link Model for State Estimation of Care Robot User. IEEE Access 11: 69310-69325 (2023) - 2021
- [j8]Mizuki Takeda, Kaiji Sato, Yasuhisa Hirata, Takahiro Katayama, Yasuhide Mizuta, Atsushi Koujina:
Standing, Walking, and Sitting Support Robot Based on User State Estimation Using a Small Number of Sensors. IEEE Access 9: 152677-152687 (2021)
2010 – 2019
- 2019
- [j7]Teng Fong Tang, Shin-Horng Chong, Rozilawati Mohd Nor, Kaiji Sato:
Practical Control Strategy for Positioning Control of Pneumatic Artificial Muscles Driven Stage: Improved NCTF Control. IEEE Access 7: 85513-85524 (2019) - 2015
- [c2]Shin-Horng Chong, Kaiji Sato:
Nominal characteristics trajectory following control as practical controller: A review. IECON 2015: 4790-4795 - 2013
- [j6]Kaiji Sato:
Effect of Multilayering on Thrust Force Characteristics in Compact Linear Switched Reluctance Motors with a Simple Layer Structure. Int. J. Autom. Technol. 7(5): 482-488 (2013) - 2012
- [c1]Shin Horng Chong, Kaiji Sato:
AR-CM NCTF Control for Precision Positioning Systems - Concept and Results. Asia International Conference on Modelling and Simulation 2012: 156-160 - 2011
- [j5]Takaaki Oiwa, Masahide Katsuki, Mitsuji Karita, Wei Gao, Susumu Makinouchi, Kaiji Sato, Yasuji Oohashi:
Questionnaire Survey on Ultra-Precision Positioning. Int. J. Autom. Technol. 5(6): 766-772 (2011) - [j4]Kaiji Sato:
Practical and Intuitive Controllers for Precision Motion: AR-CM NCTF Control of Ball Screw Mechanism. Int. J. Autom. Technol. 5(6): 793-799 (2011)
2000 – 2009
- 2009
- [j3]Kaiji Sato, Guilherme Jorge Maeda:
Fast Precision Positioning of a Ball Screw Mechanism Based on Practical NCTF Control. Int. J. Autom. Technol. 3(3): 233-240 (2009) - 2008
- [j2]Tadahiko Shinshi, Kaiji Sato, Akira Shimokohbe:
A Compact Aerostatic Spindle Integrated with an Axial Positioning Actuator for Micro and Ultra-Precision Machine Tools. Int. J. Autom. Technol. 2(1): 56-63 (2008) - 2005
- [j1]Wahyudi, Kaiji Sato, Akira Shimokohbe:
Robustness evaluation of three friction compensation methods for point-to-point (PTP) positioning systems. Robotics Auton. Syst. 52(2-3): 247-256 (2005)
Coauthor Index
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