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Simulating discrete and rhythmic multi-joint human arm movements by optimization of nonlinear performance indices

机译:通过优化非线性性能指标模拟离散且有节奏的多关节人体手臂运动

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摘要

An optimization approach applied to mechanical linkage models is used to simulate human arm movements. Predicted arm trajectories are the result of minimizing a nonlinear performance index that depends on kinematic or dynamic variables of the movement. A robust optimization algorithm is presented that computes trajectories which satisfy the necessary conditions with high accuracy. It is especially adapted to the analysis of discrete and rhythmic movements. The optimization problem is solved by parameterizing each generalized coordinate (e.g., joint angular displacement) in terms of Jacobi polynomials and Fourier series, depending on whether discrete or rhythmic movements are considered, combined with a multiple shooting algorithm. The parameterization of coordinates has two advantages. First, it provides an initial guess for the multiple shooting algorithm which solves the optimization problem with high accuracy. Second, it leads to a low dimensional representation of discrete and rhythmic movements in terms of expansion coefficients. The selection of a suitable feature space is an important prerequisite for comparison, recognition and classification of movements. In addition, the separate computational analysis of discrete and rhythmic movements is motivated by their distinct neurophysiological realizations in the cortex. By investigating different performance indices subject to different boundary conditions, the approach can be used to examine possible strategies that humans adopt in selecting specific arm motions for the performance of different tasks in a plane and in three-dimensional space.
机译:适用于机械链接模型的优化方法用于模拟人的手臂运动。预测的手臂轨迹是使非线性性能指标最小化的结果,该指标取决于运动的运动学或动态变量。提出了一种鲁棒的优化算法,可以高精度地计算出满足必要条件的轨迹。它特别适用于分析离散和有节奏的运动。通过根据雅可比多项式和傅立叶级数对每个广义坐标(例如关节角位移)进行参数化来解决优化问题,具体取决于是否考虑离散运动或节奏运动,并结合多重射击算法。坐标的参数化有两个优点。首先,它为多重射击算法提供了一个初步的猜测,可以高精度地解决优化问题。其次,这导致离散系数和有节奏的运动在膨胀系数方面的低维表示。选择合适的特征空间是比较,识别和分类运动的重要前提。此外,对离散运动和有节奏运动的单独计算分析是由它们在皮层中独特的神经生理学实现的。通过研究受不同边界条件影响的不同性能指标,该方法可用于检查人类在选择特定手臂动作以在平面和三维空间中执行不同任务时可能采取的策略。

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