Buch, Englisch, 288 Seiten, Format (B × H): 192 mm x 244 mm, Gewicht: 775 g
Predictive Dynamics
Buch, Englisch, 288 Seiten, Format (B × H): 192 mm x 244 mm, Gewicht: 775 g
ISBN: 978-0-12-405190-4
Verlag: Elsevier Science
Simulate realistic human motion in a virtual world with an optimization-based approach to motion prediction. With this approach, motion is governed by human performance measures, such as speed and energy, which act as objective functions to be optimized. Constraints on joint torques and angles are imposed quite easily. Predicting motion in this way allows one to use avatars to study how and why humans move the way they do, given specific scenarios. It also enables avatars to react to infinitely many scenarios with substantial autonomy. With this approach it is possible to predict dynamic motion without having to integrate equations of motion -- rather than solving equations of motion, this approach solves for a continuous time-dependent curve characterizing joint variables (also called joint profiles) for every degree of freedom.
Zielgruppe
<p>A reference for professionals studying human movements, such as biomechanists, motor behaviorists, ergonomists, safety equipment designers, and rehabilitation specialists. Students in advanced biomechanics courses, kinesiology, exercise science, human motion, etc. </p>
Autoren/Hrsg.
Fachgebiete
- Technische Wissenschaften Sonstige Technologien | Angewandte Technik Medizintechnik, Biomedizintechnik
- Technische Wissenschaften Technik Allgemein Modellierung & Simulation
- Naturwissenschaften Biowissenschaften Angewandte Biologie Biophysik
- Naturwissenschaften Physik Angewandte Physik Biophysik
- Medizin | Veterinärmedizin Medizin | Public Health | Pharmazie | Zahnmedizin Medizin, Gesundheitswesen Medizintechnik, Biomedizintechnik, Medizinische Werkstoffe
- Technische Wissenschaften Technik Allgemein Ergonomie, Barrierefreiheit
Weitere Infos & Material
1. Introduction2. Human Modeling: Kinematics 3. Posture Prediction and Optimization 4. Recursive Dynamics5. Predictive Dynamics 6. Strength and Fatigue: Experiments and Modeling 7. Predicting the Biomechanics of Walking 8. Predictive Dynamics: Lifting 9. Validation of Predictive Dynamics Tasks 10. Concluding Remarks