A model of human walking energetics with an elastically-suspended load
Author:
Publisher
Elsevier BV
Subject
Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics
Reference26 articles.
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2. Effects of load carriage, load position, and walking speed on energy cost of walking;Abe;Appl. Ergon.,2004
3. Ackerman, J., Seipel, J., Coupled-oscillator model of locomotion stability with elastically-suspended loads. In: Proceedings of the ASME International Design Engineering Technical Conferences. ASME, Washington, DC, 2011a, pp. 199–205.
4. Ackerman, J., Seipel, J., Energetics of bio-inspired legged robot locomotion with elastically-suspended loads. In: Proceedings of the IEEE/RSJ International Conference on Intelligent Robots and Systems. IEEE, San Francisco, CA, 2011b.
5. Energy efficiency of legged robot locomotion with elastically suspended loads;Ackerman;IEEE Trans. Robot.,2013
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1. Biomechanical Consequences of Walking With the Suspended Backpacks;IEEE Transactions on Biomedical Engineering;2024-06
2. Design and Investigation of a Suspended Backpack With Wide-Range Variable Stiffness Suspension for Reducing Energetic Cost;IEEE Transactions on Human-Machine Systems;2024-04
3. Analysis of a Human Walking Model With a Backload under Varying Stiffness and Damping Conditions;SSRN Electronic Journal;2024
4. Suspended-Load Backpacks to Reduce the Cost of Carrying Loads with Energy Scavenging Potential—Part 2: Bio-Inspired Pre-Rotation Design;Nanoenergy Advances;2023-09-04
5. Suspended-Load Backpacks to Reduce the Cost of Carrying Loads with Energy Scavenging Potential—Part 1: Pre-Compression Design;Nanoenergy Advances;2023-09-04
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