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Higher order sliding mode based impedance control for dual-user bilateral teleoperation under unknown constant time delay.

, , , , and . IROS, page 5209-5215. IEEE, (2015)

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Image Processing for 3D Reconstruction Using a Modified Fourier Transform Profilometry Method., , , , , , and . MICAI, page 705-712. (2007)Neural Network-Based Self-Tuning PID Control for Underwater Vehicles., , , , and . Sensors, 16 (9): 1429 (2016)Higher order sliding mode based impedance control for dual-user bilateral teleoperation under unknown constant time delay., , , , and . IROS, page 5209-5215. IEEE, (2015)Neuro-Sliding Control for Underwater ROV's Subject to Unknown Disturbances., , , , , and . Sensors, 19 (13): 2943 (2019)Improvement of Ultrasonic Pulse Generator for Automatic Pipeline Inspection., , , , , , and . Sensors, 18 (9): 2950 (2018)Modeling and Control of a Micro AUV: Objects Follower Approach., , , , and . Sensors, 18 (8): 2574 (2018)Image Processing for 3D Reconstruction Using a Modified Fourier Transform Profilometry Method., , , , , , and . MICAI, volume 4827 of Lecture Notes in Computer Science, page 705-712. Springer, (2007)Experimental Validation of a Model-Free High-Order Sliding Mode Controller with Finite-Time Convergence for Trajectory Tracking of Autonomous Underwater Vehicles., , , , , and . Sensors, 22 (2): 488 (2022)Impedance-based sliding mode control for nonlinear teleoperators under constant time delay., , , , and . CCA, page 1537-1543. IEEE, (2016)Higher order sliding mode based impedance control for dual-user bilateral teleoperation under unknown constant time delay., , , , and . IROS, page 5209-5215. IEEE, (2015)