Attias, C., Uchida, T., Inkol, K., & McPhee, J. (2026). Musculoskeletal modelling and predictive simulation of baseball pitching to improve performance and mitigate injury using forward dynamics and optimal control Multibody System Dynamics, 1-30. https://doi.org/10.1007/s11044-026-10143-y (Original work published)
Reference author: John McPhee
First name
John
Last name
McPhee
Nasr, A., Inkol, K., & McPhee, J. (2025). Safety in wearable robotic exoskeletons: design, control, and testing guidelines Journal of Mechanisms and Robotics, 17, 050801.
Zhao, J., Li, X., Shum, C., & McPhee, J. (2023). Control‐oriented computational fuel cell dynamics modeling‐‐model order reduction vs. computational speed Energy, 266, 126488.
Zhao, J., Li, X., Shum, C., & McPhee, J. (2023). A computationally efficient and high‐fidelity 1D steady‐state performance model for PEM fuel cells Journal of Physics: Energy, 5, 015003.
Danaei, B., & McPhee, J. (2022). Model‐based acetabular cup orientation optimization based on minimizing the risk of edge‐loading and implant impingement following total hip arthroplasty Journal of Biomechanical Engineering, 144, 111008.
Lin, Y., McPhee, J., & Azad, N. L. (2022). Co‐optimization of on‐ramp merging and plug‐in hybrid electric vehicle power split using deep reinforcement learning IEEE Transactions on Vehicular Technology, 71, 6958‐‐6968.
Lin, Y., McPhee, J., & Azad, N. L. (2020). Comparison of deep reinforcement learning and model predictive control for adaptive cruise control IEEE Transactions on Intelligent Vehicles, 6, 221‐‐231.
Jin, C., Maitland, A., & McPhee, J. (2021). Hierarchical nonlinear moving horizon estimation of vehicle lateral speed and road friction coefficient ASME Letters in Dynamic Systems and Control, 1, 011005.
Nasr, A., Hunter, J., Dickerson, C. R., & McPhee, J. (2023). Evaluation of a machine‐learning‐driven active‐‐passive upper‐limb exoskeleton robot: Experimental human‐in‐the‐loop study Wearable Technologies, 4, e13.
Nasr, A., Hashemi, A., & McPhee, J. (2024). Scalable musculoskeletal model for dynamic simulations of upper body movement Computer Methods in Biomechanics and Biomedical Engineering, 27, 306‐‐337.
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