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Tracking Control for FES-Cycling based on Force Direction Efficiency with Antagonistic Bi-Articular Muscles.

, , , and . CoRR, (2013)

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Cadence control of stationary cycling induced by switched functional electrical stimulation control., , , and . CDC, page 6260-6265. IEEE, (2014)Tracking Control for FES-Cycling based on Force Direction Efficiency with Antagonistic Bi-Articular Muscles., , , and . CoRR, (2013)Robust output feedback control of uncertain switched Euler-Lagrange systems., , and . CDC, page 4668-4673. IEEE, (2013)Tracking control of a human limb during asynchronous neuromuscular electrical stimulation., , and . CDC, page 139-144. IEEE, (2013)High-Stakes English-Language Assessments for Aviation Professionals: Supporting the Use of a Fully Automated Test of Spoken-Language Proficiency., , and . IEEE Trans. Prof. Commun., 53 (1): 18-32 (2010)Closed-Loop Position and Cadence Tracking Control for FES-Cycling Exploiting Pedal Force Direction With Antagonistic Biarticular Muscles., , , and . IEEE Trans. Control. Syst. Technol., 27 (2): 730-742 (2019)Tracking control for FES-cycling based on force direction efficiency with antagonistic bi-articular muscles., , , and . ACC, page 5484-5489. IEEE, (2014)Co-contraction of antagonist bi-articular muscles for tracking control of human limb., , , and . ACC, page 3316-3321. IEEE, (2014)iCanClean Removes Motion, Muscle, Eye, and Line-Noise Artifacts from Phantom EEG., and . Sensors, 23 (19): 8214 (October 2023)Stationary cycling induced by switched functional electrical stimulation control., , , and . ACC, page 4802-4809. IEEE, (2014)