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A Solution Method for Predictive Simulations in a Stochastic Environment

    • Friedrich-Alexander Universität Erlangen-Nürnberg

    Research output: Contribution to journalArticlepeer-review

    Abstract

    Predictive gait simulations currently do not account for environmental or internal noise. We describe a method to solve predictive simulations of human movements in a stochastic environment using a collocation method. The optimization is performed over multiple noisy episodes of the trajectory, instead of a single episode in a deterministic environment. Each episode used the same control parameters. The method was verified on a torque-driven pendulum swing-up problem. A different optimal trajectory was found in a stochastic environment than in the deterministic environment. Next, it was applied to gait to show its application in predictive simulation of human movement. We show that, unlike in a deterministic model, a nonzero minimum foot clearance during swing is predicted by a minimum-effort criterion in a stochastic environment. The predicted amount of foot clearance increased with the noise amplitude.

    Original languageAmerican English
    JournalJournal of Biomechanics
    Volume104
    DOIs
    StatePublished - May 7 2020

    Keywords

    • Predictive simulations
    • Trajectory optimizations
    • Uncertainty

    Disciplines

    • Biomechanical Engineering

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