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A novel approach for predicting Lockout/Tagout safety procedures for smart maintenance strategies.

, , , and . Int. J. Prod. Res., 62 (13): 4754-4775 (2024)

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Development of a 4DoFs exoskeleton robot for passive arm movement assistance., , , , and . Int. J. Mechatronics Autom., 2 (1): 34-50 (2012)Manufacturing-Remanufacturing Failure-Prone Systems under Random Demands., , , and . MIM, page 1620-1625. International Federation of Automatic Control, (2013)Cartesian trajectory tracking of an upper limb exoskeleton robot., , , , and . IECON, page 2668-2673. IEEE, (2012)A Hybrid Architecture for a Reconfigurable Cellular Remanufacturing System., , and . APMS (2), volume 631 of IFIP Advances in Information and Communication Technology, page 488-496. Springer, (2021)A novel approach for predicting Lockout/Tagout safety procedures for smart maintenance strategies., , , and . Int. J. Prod. Res., 62 (13): 4754-4775 (2024)Control of a powered exoskeleton for elbow, forearm and wrist joint movements., , , , and . ROBIO, page 1561-1566. IEEE, (2011)Position Control of an Electro-Hydraulic Servosystem - A Non-Linear Backstepping Approach., , and . ICINCO (2), page 270-276. INSTICC Press, (2004)Multi-scenario and multi-criteria approach to evaluate prediction techniques used to recognise failure patterns., , , , and . Int. J. Appl. Decis. Sci., 14 (4): 361-386 (2021)A simulation optimization approach in production planning of failure prone manufacturing systems., and . J. Intell. Manuf., 12 (5-6): 421-431 (2001)Development of a whole arm wearable robotic exoskeleton for rehabilitation and to assist upper limb movements., , , , , and . Robotica, 33 (1): 19-39 (2015)