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Design and study of a biomimetic wall-climbing robot with spine wheels and a vacuum suction cup.

, , , , , , and . RCAR, page 690-696. IEEE, (2019)

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Design and study of a biomimetic wall-climbing robot with spine wheels and a vacuum suction cup., , , , , , and . RCAR, page 690-696. IEEE, (2019)A robotic system with reinforcement learning for lower extremity hemiparesis rehabilitation., , , , , , and . Ind. Robot, 48 (3): 388-400 (2021)Research on Trajectory Tracking Control of Traction upper Limb Rehabilitation Robot Based on Feedforward Impedance Theory., , , , , , , and . ICARM, page 1035-1039. IEEE, (2022)Design and Control of Soft Exoskeleton Based on Human Motion Intention., , , , , and . ICARM, page 1047-1052. IEEE, (2023)Design of Lower Extremity Rehabilitation Robots with Magnetorheological Dampers and Wire-Driven System., , , , , and . ICIA, page 395-400. IEEE, (2018)CPG-based online trajectory generation for quadruped rovers., , and . ROBIO, page 1053-1058. IEEE, (2015)Dynamic analysis of fluid-structure interaction for the biped robot running on water., , , and . ICARCV, page 1546-1550. IEEE, (2012)Survey on Bioinspired Adhesive Methods and Design and Implementation of A Multi-Mode Biomimetic Wall-Climbing Robot., , , , and . AIM, page 688-693. IEEE, (2018)Noise-label Suppressed Module for Speech Emotion Recognition., , , , and . RobCE, page 148-152. ACM, (2023)Active Movements Intention Recognition for Upper Limb Rehabilitation Robots Based on EMG Signals., , and . RCAR, page 817-822. IEEE, (2023)