Influence of Controller on Cable Driven Lower Limb Rehabilitation Exoskeleton (C-LREX): PD vs MPC

dc.contributor.authorRajan Prasad
dc.contributor.authorKinda Khalaf
dc.contributor.authorMohammad I. Awad
dc.contributor.authorMarwan El-Rich
dc.date.accessioned2025-11-17T06:58:04Z
dc.date.available2025-11-17T06:58:04Z
dc.date.issued2023
dc.description.abstractCable driven exoskeletons are preferred over link-driven exoskeletons due to numerous advantages such as remote actuation, lightweight, reconfigurability, and many more. PD (proportional derivative) controllers are widely implemented in exoskeletons due to simplicity and faster response. However, in cable driven exoskeleton, the PD controller doesn't directly distribute the cable tension and thus the possibility of tracking error is higher. In this work, we formulated a non-linear model predictive controller (NMPC) for C-LREX that directly allocates cable tension and is further simplified to reduce the time delay. The simulation result indicated that simplified NMPC is faster than NMPC but slower than PD for C-LREX. NMPCs tracked trajectory with the least error, however, allocated higher cable tension. PD should be preferred when speed is prioritized while NMPC should be preferred for performance. Keywords: Cable-driven exoskeleton, C-LREX, Rehabilitation robotics, Remote actuation, Lightweight exoskeleton, Reconfigurable exoskeleton
dc.identifier.citationPrasad, R., Khalaf, K., Awad, M. I., & El-Rich, M. (2023, July). Influence of Controller on Cable Driven Lower Limb Rehabilitation Exoskeleton (C-LREX): PD vs MPC. In 2023 9th International Conference on Control, Decision and Information Technologies (CoDIT) (pp. 1832-1837). IEEE.
dc.identifier.doihttps://doi.org/10.1109/CoDIT58514.2023.10284066
dc.identifier.urihttps://repository.adu.ac.ae/handle/1/7731
dc.language.isoen
dc.publisherIEEE Xplore
dc.titleInfluence of Controller on Cable Driven Lower Limb Rehabilitation Exoskeleton (C-LREX): PD vs MPC
dc.typeArticle

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