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Application of wave-variable control to bilateral teleoperation systems: A survey.

, , and . Annual Reviews in Control, 38 (1): 12-31 (2014)

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Stability Control of Force-Reflected Nonlinear Multilateral Teleoperation System under Time-Varying Delays., , and . J. Sensors, (2016)Multilateral Teleoperation With New Cooperative Structure Based on Reconfigurable Robots and Type-2 Fuzzy Logic., , , , and . IEEE Trans. Cybernetics, 49 (8): 2845-2859 (2019)Assisted Telemanipulation: A Stack-Of-Tasks Approach to Remote Manipulator Control., , , , and . IROS, page 1-9. IEEE, (2018)Transparent four-channel bilateral control architecture using modified wave variable controllers under time delays., , and . Robotica, 34 (4): 859-875 (2016)A New Mixed-Reality-Based Teleoperation System for Telepresence and Maneuverability Enhancement., , , , and . IEEE Trans. Hum. Mach. Syst., 50 (1): 55-67 (2020)What if We Simply Swap the Two Text Fragments? A Straightforward yet Effective Way to Test the Robustness of Methods to Confounding Signals in Nature Language Inference Tasks., , and . AAAI, page 7136-7143. AAAI Press, (2019)Application of wave-variable control to bilateral teleoperation systems: A survey., , and . Annual Reviews in Control, 38 (1): 12-31 (2014)What If We Simply Swap the Two Text Fragments? A Straightforward yet Effective Way to Test the Robustness of Methods to Confounding Signals in Nature Language Inference Tasks., , and . CoRR, (2018)Novel Force Estimation-based Bilateral Teleoperation applying Type-2 Fuzzy logic and Moving Horizon Estimation., , and . CoRR, (2018)Enhancing flexibility of the dual-master-dual-slave multilateral teleoperation system., , and . CCA, page 300-305. IEEE, (2015)