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SIMULATING EQUIPMENT INTERACTION WITH PREDICTIVE DYNAMICS

机译:用预测动力学模拟设备相互作用

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摘要

Recent advances in predictive dynamics allow the user to not only predict physics based human motion simulations but also determine the actuation torques required to achieve those motions. The predictive dynamics approach uses optimization to predict motion while using many task based, physics based, and environment based constraints including the equations of motion. Many tasks have been simulated using this new method of predicting and simulating digital human motion, e.g. walking, running, stair climbing, and box lifting. In this research, we develop a method to predict the motion as well as effect of external equipment hanging on the digital human. The proposed method is tested on a simple case of a two degree of freedom serial chain mechanism with a simple passive system to behave as external equipment. In particular, the passive mass is assumed to be attached to the two links system with a spring and damper. The results of the proposed method are compared with the results obtained by integrating the equations of motion of the full three degree of freedom system.
机译:预测动力学的最新进展使用户不仅可以预测基于物理学的人体运动模拟,而且可以确定实现这些运动所需的致动扭矩。预测动力学方法使用优化来预测运动,同时使用许多基于任务的,基于物理的和基于环境的约束,包括运动方程。使用这种预测和模拟数字人体运动的新方法已经模拟了许多任务,例如步行,跑步,爬楼梯和抬箱。在这项研究中,我们开发了一种预测运动的方法以及悬挂在数字人身上的外部设备的效果。该方法在具有两个自由度串行链机制的简单情况下进行了测试,该机制具有简单的被动系统作为外部设备。特别是,假定被动质量块通过弹簧和减振器固定在两个连杆系统上。将所提出的方法的结果与通过整合整个三自由度系统的运动方程获得的结果进行比较。

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