Biomechanical Evaluation of an Electric Power-Assisted Bicycle by a Musculoskeletal Model

  • TAKEHARA S
  • MURAKAMI M
  • HASE K
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Abstract

In this study, we construct an evaluation system for the muscular activity of the lower limbs when a human pedals an electric power-assisted bicycle. The evaluation system is composed of an electric power-assisted bicycle, a numerical simulator and a motion capture system. The electric power-assisted bicycle in this study has a pedal with an attached force sensor. The numerical simulator for pedaling motion is a musculoskeletal model of a human. The motion capture system measures the joint angles of the lower limb. We examine the influence of the electric power-assisted force on each muscle of the human trunk and legs. First, an experiment of pedaling motion is performed. Then, the musculoskeletal model is calculated by using the experimental data. We discuss the influence on each muscle by electric power-assist. It is found that the muscular activity is decreased by the electric power-assist bicycle, and the reduction of the muscular force required for pedaling motion was quantitatively shown for every muscle.

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TAKEHARA, S., MURAKAMI, M., & HASE, K. (2012). Biomechanical Evaluation of an Electric Power-Assisted Bicycle by a Musculoskeletal Model. Journal of System Design and Dynamics, 6(3), 343–350. https://doi.org/10.1299/jsdd.6.343

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