This Is AuburnElectronic Theses and Dissertations

Show simple item record

Saturated Auxiliary Robust Integral of the Sliding ModE (ARISE) Controllers for Hybrid Exoskeletons


Metadata FieldValueLanguage
dc.contributor.advisorAllen, Brendon
dc.contributor.authorCrapet, Joseph
dc.date.accessioned2026-08-06T18:59:55Z
dc.date.available2026-08-06T18:59:55Z
dc.date.issued2026-08-06
dc.identifier.urihttps://etd.auburn.edu/handle/10415/10596
dc.description.abstractAbstract Millions of Americans are affected by neurological conditions (NCs), which can be caused by spinal cord injuries, stroke, Parkinson's disease, and more. NCs can significantly reduce the quality of life of those afflicted by impairing motor control, reducing muscle mass, and decreasing bone density while increasing the risk of secondary health conditions. Individuals with NCs often face significant challenges in daily life, demonstrating the need for improved rehabilitation and recovery options. One device used to improve recovery is a hybrid exoskeleton. A hybrid exoskeleton combines robots (to provide assistance or resistance) with functional electrical stimulation (to promote active user participation during the exercise). Although hybrid exoskeletons have proven beneficial for rehabilitation, their nonlinear and often uncertain dynamics can make them difficult to control. Therefore, the focus of this thesis is on the improvement of FES-based therapies. Specifically, this thesis develops a novel robust and adaptive control structure for hybrid exoskeletons: the saturated Auxiliary Robust Integral of the Sliding ModE (ARISE) control method.en_US
dc.rightsEMBARGO_NOT_AUBURNen_US
dc.subjectMechanical Engineeringen_US
dc.titleSaturated Auxiliary Robust Integral of the Sliding ModE (ARISE) Controllers for Hybrid Exoskeletonsen_US
dc.typeMaster's Thesisen_US
dc.embargo.lengthMONTHS_WITHHELD:24en_US
dc.embargo.statusEMBARGOEDen_US
dc.embargo.enddate2028-08-06en_US
dc.contributor.committeeRose, Chad
dc.contributor.committeeMarghitu, Dan

Files in this item

Show simple item record