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Predictive dynamics: an optimization-based novel approach for human motion simulation

机译:预测动力学:基于优化的人体运动仿真新方法

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Predictive dynamics is a novel approach for simulating human motion. It avoids direct integration of differential-algebraic equations in order to create the resulting simulations for redundant digital human models. Instead, it formulates an optimization problem by defining appropriate performance measures and constraints to recover the real motion of the dynamic system. In the formulation, both kinematics and kinetics parameters serve as unknowns, and equations of motion are treated as equality constraints. Procedures to choose physical performance measures and appropriate constraints based on the available information about the bio-system are presented. The proposed methodology is illustrated and studied by first predicting the swinging motion of a single pendulum with externally applied torque. The pendulum can represent the motion of upper and lower extremities. This simple problem has analytical solutions and is used to gain insights for the predictive dynamics approach. In addition, a complex human walking task is simulated by using the approach, and realistic results are obtained. Such motion prediction capabilities have a wide variety of applications for industries ranging from automotive to military to clinical analysis and design.
机译:预测动力学是一种模拟人体运动的新颖方法。它避免了直接对微分-代数方程式进行积分,从而为冗余的数字人体模型创建了仿真结果。相反,它通过定义适当的性能度量和约束条件来恢复动态系统的真实运动,从而提出了优化问题。在公式中,运动学参数和动力学参数都用作未知数,运动方程被视为等式约束。介绍了基于有关生物系统的可用信息选择物理性能指标和适当限制条件的程序。通过首先预测单个摆锤在外部施加扭矩时的摆动运动来说明和研究所提出的方法。钟摆可以代表上肢和下肢的运动。这个简单的问题具有解析性解决方案,可用于深入了解预测动力学方法。另外,利用该方法对复杂的人类步行任务进行了仿真,并获得了现实的结果。这种运动预测功能在汽车,军事,临床分析和设计等行业具有广泛的应用。

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