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Functional electrical stimulation induced cycling using repetitive learning control.

, , , and . CDC, page 2190-2195. IEEE, (2016)

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Saturated Adaptive Control of Antagonistic Muscles on an Upper-Limb Hybrid Exoskeleton., and . ACC, page 4397-4402. IEEE, (2022)Smoothly Switched Adaptive Torque Tracking for Functional Electrical Stimulation Cycling., and . IEEE Control. Syst. Lett., (2022)Cycling With Functional Electrical Stimulation and Adaptive Neural Network Admittance Control., , , and . ACC, page 1742-1747. IEEE, (2019)Compensating for changing muscle geometry of the biceps brachii during neuromuscular electrical stimulation: A switched systems approach., , , , and . CDC, page 1328-1333. IEEE, (2016)Public Perception, Privacy, Safety, and Ethical Considerations of Communication Robots in Law Enforcement., , , , and . RO-MAN, page 1586-1591. IEEE, (2022)Functional electrical stimulation induced cycling using repetitive learning control., , , and . CDC, page 2190-2195. IEEE, (2016)Cadence and Admittance Control of a Motorized Functional Electrical Stimulation Cycle., , , and . CDC, page 6470-6475. IEEE, (2018)Motorized functional electrical stimulation for torque and cadence tracking: A switched Lyapunov approach., , , and . CDC, page 5900-5905. IEEE, (2017)Analyzing Human-Robot Trust in Police Work Using a Teleoperated Communicative Robot., , , , and . RO-MAN, page 919-924. IEEE, (2021)Torque and cadence tracking in functional electrical stimulation induced cycling using passivity-based spatial repetitive learning control., , , , and . Autom., (2020)