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Tangyou Liu
Tangyou Liu
Ph.D. Candidate, UNSW
Zweryfikowany adres z unsw.edu.au - Strona główna
Tytuł
Cytowane przez
Cytowane przez
Rok
System design and balance control of a bipedal leg-wheeled robot
C Zhang, T Liu, S Song, MQH Meng
2019 IEEE international conference on robotics and biomimetics (ROBIO), 1869 …, 2019
272019
An optically aided magnetic tracking approach for magnetically actuated capsule robot
Q Shi, T Liu, S Song, J Wang, MQH Meng
IEEE Transactions on Instrumentation and Measurement 70, 1-9, 2021
262021
Dynamic height balance control for bipedal wheeled robot based on ros-gazebo
T Liu, C Zhang, S Song, MQH Meng
2019 IEEE International Conference on Robotics and Biomimetics (ROBIO), 1875 …, 2019
152019
Dynamic wheeled motion control of wheel-biped transformable robots
C Zhang, T Liu, S Song, J Wang, MQH Meng
Biomimetic Intelligence and Robotics 2 (2), 100027, 2022
122022
Towards terrain adaptablity: In situ transformation of wheel-biped robots
T Liu, C Zhang, J Wang, S Song, MQH Meng
IEEE Robotics and Automation Letters 7 (2), 3819-3826, 2022
62022
Static Modeling of a Class of Stiffness-Adjustable Snake-like Robots with Gravity Compensation
J Hu, T Liu, H Zeng, MX Chua, J Katupitiya, L Wu
Robotics 12 (1), 2, 2022
22022
Haptics-Enabled Forceps With Multimodal Force Sensing: Toward Task-Autonomous Surgery
T Liu, T Zhang, J Katupitiya, J Wang, L Wu
IEEE/ASME Transactions on Mechatronics, 2023
12023
Automatic Tissue Traction with Haptics-Enabled Forceps for Minimally Invasive Surgery
T Liu, X Wang, J Katupitiya, J Wang, L Wu
arXiv preprint arXiv:2401.13957, 2024
2024
Haptics-Enabled Forceps with Multi-Modal Force Sensing: Towards Task-Autonomous Robotic Surgery
T Liu, T Zhang, J Katupitiya, J Wang, L Wu
arXiv preprint arXiv:2303.08359, 2023
2023
Static Modeling of a Class of Stiffness-Adjustable Snake-like Robots with Gravity Compensation. Robotics 2023, 12, 2
J Hu, T Liu, H Zeng, M Chua, J Katupitiya, L Wu
2022
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