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Towards supervisory control of humanoid robots for driving vehicles during disaster response missions., , , , и . TePRA, стр. 1-6. IEEE, (2015)A Blended Human-Robot Shared Control Framework to Handle Drift and Latency., , и . CoRR, (2018)User-centric design of a personal assistance robot (FRASIER) for active aging., , и . EMBC, стр. 5020-5023. IEEE, (2015)Task-oriented planning algorithm for humanoid robots based on a foot repositionable inverse kinematics engine., , , и . Humanoids, стр. 1114-1120. IEEE, (2016)Autonomous is Not Enough: Designing Multisensory Mid-Air Gestures for Vehicle Interactions Among People with Visual Impairments., , , , , , и . CHI, стр. 74:1-74:13. ACM, (2023)A shared control architecture for human-in-the-loop robotics applications., и . RO-MAN, стр. 1089-1094. IEEE, (2014)Human-centered design of a cyber-physical system for advanced response to Ebola (CARE)., , , , , и . EMBC, стр. 6856-6859. IEEE, (2015)Human-in-the-loop Control of a Humanoid Robot for Disaster Response: A Report from the DARPA Robotics Challenge Trials., , , , , , , , , и 4 other автор(ы). J. Field Robotics, 32 (2): 275-292 (2015)A Blended Human-Robot Shared Control Framework to Handle Drift and Latency., , и . SSRR, стр. 81-87. IEEE, (2019)Kinematic Control of a Planetary Exploration Rover over Rough Terrain., , , , и . SMC, стр. 4488-4493. IEEE, (2013)