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Written Communication System based on Multilateral Teleoperation using Scattering Matrix with Gains.

, and . ISR, page 146-151. IEEE, (2018)

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Tele-Rehabilitation system for human lower limb using electrical stimulation based on bilateral teleoperation., , , , and . CCTA, page 1446-1451. IEEE, (2017)Tracking Control of FES Alternate Knee sBending and Stretching Trike in Consideration of Running Velocity., , , , , and . IECON, page 390-395. IEEE, (2020)Iterative Learning Control for FES-Cycling With Antagonistic Biarticular Muscles., , , , , and . IECON, page 279-284. IEEE, (2020)Bilateral Tele-Rehabilitation System with Electrical Stimulation using Web Server.. ICCE-TW, page 329-330. IEEE, (2022)FES-Assisted Standing-up Motion Control Incorporating Center of Mass Motion., , , , , , and . IECON, page 1-6. IEEE, (2023)Co-contraction of antagonist bi-articular muscles for tracking control of human limb., , , and . ACC, page 3316-3321. IEEE, (2014)Passivity and RISE based robust control for bilateral teleoperation system with communication delay., and . CCA, page 270-275. IEEE, (2013)Vision-navigated Bilateral Control for Master-slave Teleoperation System., , , and . IECON, page 2481-2486. IEEE, (2018)Fatigue Estimation using Nonlinear Disturbance Observer for Tele-Rehabilitation System with Electrical Stimulation., , , , and . ICCE-TW, page 1-2. IEEE, (2021)Fatigue Estimation using Gaussian Process Regression for Bilateral Tele-Rehabilitation System with Electrical Stimulation., , , and . CCTA, page 305-310. IEEE, (2022)