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A computationally efficient optimisation-based method for parameter identification of kinematically determinate and over-determinate biomechanical systems

机译:一种基于计算效率的基于优化的运动学确定性和超确定性生物力学系统参数的方法

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摘要

This paper introduces a general optimisation-based method for identification of biomechanically relevant parameters in kinematically determinate and over-determinate systems from a given motion. The method is designed to find a set of parameters that is constant over the time frame of interest as well as the time-varying system coordinates, and it is particularly relevant for biomechanical motion analysis where the system parameters can be difficult to accurately determine by direct measurements. Although the parameter identification problem results in a large-scale optimisation problem, we show that, due to a special structure in the linearised Karush-Kuhn-Tucker optimality conditions, the solution can be found very efficiently. The method is applied to a set of test problems relevant for gait analysis. These involve determining the local coordinates of markers placed on the model, segment lengths and joint axes of rotation from both gait and range of motion experiments.
机译:本文介绍了一种基于优化的通用方法,用于从给定运动中识别运动学确定和过确定的系统中的生物力学相关参数。该方法旨在查找在感兴趣的时间范围以及时变的系统坐标上恒定的一组参数,这尤其适用于生物力学运动分析,因为在该过程中,系统参数很难通过直接精确确定。测量。尽管参数识别问题导致大规模优化问题,但我们证明,由于线性化的Karush-Kuhn-Tucker最优性条件中的特殊结构,可以非常有效地找到解决方案。该方法适用于与步态分析相关的一组测试问题。这些涉及从步态和运动实验范围确定放置在模型上的标记的局部坐标,段长度和关节旋转轴。

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