A simulation-based study for optimizing proportional-integral-derivative controller gains for different control strategies of an active upper extremity model using experimental data

Author:

Devane Karan12ORCID,Gayzik F. Scott12ORCID

Affiliation:

1. Biomedical Engineering, Wake Forest University School of Medicine, Winston-Salem, NC, USA

2. Virginia Tech-Wake Forest University Center for Injury Biomechanics, Winston-Salem, NC, USA

Funder

Global Human Body Models Consortium, LLC and NHTSA

Publisher

Informa UK Limited

Subject

Computer Science Applications,Human-Computer Interaction,Biomedical Engineering,General Medicine,Bioengineering

Reference27 articles.

1. Andersson S. 2013. Active muscle control in human body model simulations: implementation of a feedback control algorithm with standard keywords in LS-DYNA. Göteborg: Chalmers University of Technology.

2. Effects of Bracing on Human Kinematics in Low-Speed Frontal Sled Tests

3. Budziszewski P, van Nunen E, Mordaka JK, Kędzior K. 2008. Active controlled muscles in numerical model of human arm for movement in two degrees of freedom. IRCOBI Conference Proceedings, International Conference on the Biomechanics of impact; Bern, Switzerland.

4. A Computational Human Model With Stabilizing Spine: A Step Towards Active Safety

5. Chan H, Albert DL, Gayzik FS, Kemper AR. 2022. Occupant kinematics of braced 5th percentile female and 50th percentile male volunteers in low-speed frontal and frontal-oblique sled tests. IRCOBI.

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