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GROUND REACTION FORCES FOR VARIOUS STANDING TASKS CONSIDERING GENERIC TERRAIN

机译:考虑一般地形的各种站立任务的地面反应力

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Many of the tasks presented to people in everyday life include standing on terrain that is not level or coplanar. Uneven terrain can affect the way in which people distribute their weight between their feet. This paper proposes a method for predicting human standing posture and the associated ground reaction forces (GRFs) taking into account a generic orientation of the ground support plane. Postures are predicted using multi-objective optimization (MOO) techniques and a 55 DOF digital human model. The human performance measures used in the cost function include musculoskeletal discomfort, delta potential energy, and visual displacement. The GRF are determined by a linear distribution model derived from the zero moment point (ZMP) and the Lagrangian recursive dynamic formulation. Postural stability based on the location of the ZMP will be discussed. Three postural cases are considered: standing on flat ground, standing with one foot on a stair, and standing with arbitrary support plane angles. Three different simulations are carried out for each case representing different tasks. Predicted GRFs have realistic values and follow the general trends expected for each of the postural cases.
机译:在日常生活中呈现给人们的许多任务包括站在非水平或共面的地形上。不平坦的地形会影响人们在双脚之间分配体重的方式。考虑到地面支撑平面的一般方向,本文提出了一种预测人体站立姿势和相关地面反作用力(GRF)的方法。使用多目标优化(MOO)技术和55 DOF数字人体模型可以预测姿势。成本函数中使用的人类绩效指标包括肌肉骨骼不适,δ势能和视觉位移。 GRF由源自零矩点(ZMP)和拉格朗日递归动态公式的线性分布模型确定。将讨论基于ZMP位置的姿势稳定性。考虑了三种姿势情况:站立在平坦的地面上,一只脚站在楼梯上,以及以任意支撑平面角度站立。针对每种情况执行三种不同的模拟,分别代表不同的任务。预测的GRF具有现实价值,并遵循每种姿势情况的预期总体趋势。

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