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Bioinspired Robot Controls Aided with Biological Signals: A Case Study with a Masticatory Robot., , и . M2VIP, стр. 1-5. IEEE, (2023)Disturbance Observer-Based Controller for Mimicking Mandibular Motion and Studying Temporomandibular Joint Reaction Forces by a Chewing Robot., , , и . AIM, стр. 1042-1047. IEEE, (2020)A Hierachical Operating System of a Chewing Robot for Interactive Real-Time Control., , и . M2VIP, стр. 1-6. IEEE, (2023)New Concept and Challenges for a Next-Generation Chewing Robot., , , и . M2VIP, стр. 1-4. IEEE, (2022)In-vitro Measurement of Reaction Forces in the Temporomandibular Joints Using a Redundantly Actuated Parallel Chewing Robot., , , , и . AIM, стр. 1467-1472. IEEE, (2019)Dynamics Modelling and Robust Passivity-Based Control of Cable-Suspended Parallel Robots in Fluidic Environment., , и . ICMRE, стр. 48-53. IEEE, (2021)Model based current analysis of electrical machines to detect faults in planetary gearboxes., , и . AIM, стр. 1616-1621. IEEE, (2014)A Critical Investigation of Hilbert-Huang Transform Based Envelope Analysis for Fault Diagnosis of Gears., , и . AIM, стр. 1124-1129. IEEE, (2018)Multi-image Stitching for Smartphone-based Retinal Fundus Stitching., , , и . AIM, стр. 179-184. IEEE, (2022)Deep Learning based Time-Frequency Image Enhancement Method for Machinery Health Monitoring., , и . AIM, стр. 852-857. IEEE, (2023)