| 2025 | IECON | Synthesis of Decentralized Variable Gain Robust Model-Following Controllers Giving Consideration to Transient Behavior for Uncertain Large-Scale Serially Connected Systems via Piecewise Lyapunov Functions. | Hayate Sawato, Koki Shibuya, Haruto Takahashi, Takuma Kawakami, Yoshikatsu Hoshi, Hidetoshi Oya |
| 2025 | IECON | Adaptive Robust Preview Formation Controllers for Uncertain Discrete-Time Multi-Agent Systems. | Koki Shibuya, Hayate Sawato, Yoshikatsu Hoshi, Hidetoshi Oya |
| 2025 | IECON | A Robust Dynamic Output Feedback Control for a Class of Uncertain Switched Affine Systems. | Haruto Takahashi, Hayate Sawato, Kouki Shibuya, Takuma Kawakami, Yoshikatsu Hoshi, Hidetoshi Oya |
| 2023 | IECON | A Formation Control for Multi-Agent Systems for Event-Trigger-Based Variable Gain Controllers. | Daiki Asada, Takuya Nakagawa, Yoshikatsu Hoshi, Hidetoshi Oya, Shunya Nagai |
| 2023 | IECON | Analysis of Biological Data of Cows and Development of Detection Systems for Calving Phase. | Hiroto Noma, Tatsuya Komatsu, Kansei Matsumoto, Hidetoshi Oya, Ryotaro Miura, Koji Yoshioka, Yoshikatsu Hoshi |
| 2022 | IECON | Synthesis of Adaptive Gain Robust Controllers for Polytopic Uncertain Systems with Multiple Unknown Dead-Zone Inputs. | Satoshi Hayakawa, Takuya Nakagawa, Hidetoshi Oya, Yoshikatsu Hoshi |
| 2018 | ICARCV | Synthesis of Point Memory-Based Adaptive Gain Robust Controllers with Guaranteed $\mathcal{L}_{2}$ Gain Performance for a Class of Uncertain Time-Delay Systems. | Hidetoshi Oya, Shunya Nagai, Tsuyoshi Matsuki, Yoshikatsu Hoshi |
| 2018 | IECON | An LMI-based Design Method of a Variable Gain Robust Controller Giving Consideration to Nominal L | Shunya Nagai, Hidetoshi Oya, Tsuyoshi Matsuki, Yoshikatsu Hoshi |
| 2018 | IECON | A New Recognition Algorithm for Shockable Arrhythmias and Its Performance Analysis. | Takayuki Okai, Shogo Hirata, Hidetoshi Oya, Yoshikatsu Hoshi, Kazushi Nakano, Yoshihiro Yamaguchi, Takashi Igarashi, Hiroshi Miyauchi |
| 2000 | IROS | Locomotion control of a snake-like robot based on dynamic manipulability. | Hisashi Date, Yoshikatsu Hoshi, Mitsuji Sampei |