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Gait Pattern Generation for Lower Extremity Exoskeleton Robot and Verification of Energy Efficiency

Wan-Soo Kim, Seung‐Hoon Lee, Jae-Kwan Ryu, Joo-Hyun Baek, Dong-Whan Kim, Jung‐Soo Han, Chang-Soo Han

Year
2012
Citations
3

Abstract

The purpose of this study is to verify the energy efficiency of the integrated system combining human and a lower extremity exoskeleton robot when it is applied to the proposed gait pattern. Energy efficient gait pattern of the lower limb was proposed through leg function distribution during stance phase and the dynamic-manipulability ellipsoid (DME). To verify the feasibility and effect of the redefined gait trajectory, simulations and experiments were conducted under the conditions of walking on level ground and ascending and descending from a staircase. Experiments to calculate the metabolic cost of the human body with or without the assistance of the exoskeleton were conducted. The energy consumption of the lower extremity exoskeleton was assessed, with the aim of improving the efficiency of the integrated system.

Keywords

ExoskeletonGaitGait cycleTrajectoryRobotSimulationEllipsoidEnergy consumptionComputer sciencePowered exoskeleton

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