按子任务划分的人箱交付仿真

Paul Owens, Y. Xiang
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引用次数: 0

摘要

本研究提出了一个解决方案,以确定一个盒子的最佳交付。交付任务分为五个子任务:提升、初始过渡步骤、搬运、最终过渡步骤和卸载。每个任务都在适当的边界条件下独立模拟,以便将它们拼接在一起以呈现完整的交付任务。每个任务都是一个优化问题。设计变量为关节角轮廓。对于起重搬运任务,目标函数是动态力。而对于过渡任务,目标函数是动态力和关节角度不适感的组合。对于卸荷,则是升降运动的反向过程。根据仿真结果生成可行的优化运动。分析了关节扭矩、关节角度和地面反力对传递运动的影响,并进行了经验验证。
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Human Box Delivering Simulation by Subtask Division
This study addresses one solution for determining the optimal delivery of a box. The delivering task is divided into five subtasks: lifting, initial transition step, carrying, final transition step, and unloading. Each task is simulated independently with appropriate boundary conditions so that they can be stitched together to render a complete delivering task. Each task is formulated as an optimization problem. The design variables are joint angle profiles. For lifting and carrying tasks, the objective function is the dynamic effort. In contrast, for transition task, the objective function is the combination of dynamic effort and joint angle discomfort. For unloading, it is a reverse process of lifting motion. A viable optimization motion is generated from the simulation results. The joint torque, joint angle, and ground reactive forces are analyzed for the delivering motion which is also empirically validated.
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