基于肌肉骨骼模型的人体工程学设计

Chun-Ming Chang, J. Tsai
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引用次数: 2

摘要

本文提出了一种基于肌肉骨骼模型的坐姿调整框架。在对肌肉和力量进行分析后,指定了一些 - œcomfortableâ -”姿势作为候选姿势。然后,根据当前肌肉状况和需要的持续时间,应用优化算法从这些候选对象中进行选择,并为坐姿者形成有序的姿势序列。坐着的人在感到不舒服之前动态地变换姿势,因此他们可以长时间保持坐姿。人体工程学专家也可以从间歇性姿势的信息中获益,并将其作为新椅子/桌子设计的指导方针。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ergonomic Designs Based on Musculoskeletal Models
A framework to adjust sitting postures based on musculoskeletal models is presented in this paper. After the analysis of muscles and strength, some “comfortable” postures are specified as candidate postures. An optimization algorithm is then applied to choose from these candidates, according to current conditions of muscles and the durations one needs, and form a sequence of ordered postures for the sitters. The sitters shift the postures dynamically before they feel uncomfortable, therefore they can maintain a seated posture for extended durations. The ergonomists can also benefit from the information of intermittent postures and use it as a guideline for a new chair/desk design.
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