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Multilateral control for delayed teleoperation., , , и . ICAR, стр. 1-6. IEEE, (2013)Tele-Robotics VR with Holographic Vision in Immersive Video., , , , , , и . IXR@MM, стр. 61-68. ACM, (2022)Haptic intention augmentation for cooperative teleoperation., , , , , и . ICRA, стр. 5335-5341. IEEE, (2017)Integrating Haptic Data Reduction with Energy Reflection-Based Passivity Control for Time-delayed Teleoperation., , , и . HAPTICS, стр. 109-114. IEEE, (2020)Investigating the Influence of Haptic Feedback in Rover Navigation with Communication Delay., , , , , и . EuroHaptics, том 12272 из Lecture Notes in Computer Science, стр. 527-535. Springer, (2020)Model-Augmented Haptic Telemanipulation: Concept, Retrospective Overview, and Current Use Cases., , , , , , , , , и 14 other автор(ы). Frontiers Robotics AI, (2021)Cartesian task allocation for cooperative, multilateral teleoperation under time delay., , и . ICRA, стр. 312-317. IEEE, (2015)A Finite-Gain Stable Multi-Agent Robot Control Framework with Adaptive Authority Allocation., , , и . ICRA, стр. 1579-1585. IEEE, (2021)Integrating Measured Force Feedback in Passive Multilateral Teleoperation., , , , и . EuroHaptics (1), том 9774 из Lecture Notes in Computer Science, стр. 316-326. Springer, (2016)Extended Predictive Model-Mediated Teleoperation of Mobile Robots through Multilateral Control., , , , , и . Intelligent Vehicles Symposium, стр. 1723-1730. IEEE, (2018)