Home /Research /Efficiency and Optimality of Two-Period Limit Cycle Walking
LOCOMOTION

Efficiency and Optimality of Two-Period Limit Cycle Walking

Fumihiko Asano

Year
2012
Citations
15

Abstract

This paper investigates the efficiency of a two-period gait from the kinetic energy viewpoint. First, we formulate a steady two-period gait for a compass-like bipedal robot by using a simple recurrence formula for the kinetic energy of an asymmetric rimless wheel. Then, we theoretically show that, in the case where the mean value of the hip angle is constant, the generated two-period steady gait is less efficient than a one-period symmetric gait in terms of kinetic energy. We also show that the symmetric gait is not always optimal from another viewpoint. We then extend the analysis to biped walking and investigate the validity of the derived method through numerical simulations of virtual passive dynamic walking.

Keywords

GaitEffect of gait parameters on energetic costGait cycleControl theory (sociology)Kinetic energyLimit cycleLimit (mathematics)MathematicsGait analysisComputer science

Related papers

Browse all LOCOMOTION papers