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首页> 外文期刊>International Journal of Industrial Ergonomics >A mathematical method for ergonomic-based design: placement
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A mathematical method for ergonomic-based design: placement

机译:基于人体工学设计的数学方法:放置

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摘要

A rigorous mathematical formulation for ergonomic design based on obtaining and visualizing the workspace of human limbs is herein presented. The methodology and formulation presented in this paper are aimed at placing the human with respect to specified targets, whereby optimizing a given human performance measure. These measures are developed as mathematical cost functions that can be maximized or minimized. For example, as a result of this analysis, a method for placing the human operator relative to the controls in an assembly line while minimizing the person's stress at each joint can be achieved. Other cost functions such as maximizing reachability or maximizing dexterity are considered. The method is characterized by two steps: (1) determine the boundary envelope (also called reach envelope) of a human limb in closed form as, and, (2) move the workspace envelope towards optimizing the cost function while satisfying all constraints. By defining a new position and orientation of the limb's workspace with respect to the target points, it is possible to establish an ergonomic design that satisfies the given constraints. The strengths of this method are in its ability to visualize the placement-reach design problem and in its broadly applicable mathematical formulation well suited for computer implementation. Furthermore, because the ergonomic design problem is indeed an optimization process, the use of optimization techniques in this work lends itself to addressing other standing problems. The formulation and code are demonstrated using a number of examples.
机译:本文介绍了一种基于人体工学设计的严格数学公式,该公式基于获取和可视化人体四肢的工作空间。本文介绍的方法和公式旨在针对特定目标放置人员,从而优化给定的人员绩效指标。这些度量被开发为可以最大化或最小化的数学成本函数。例如,作为该分析的结果,可以实现一种用于将操作员相对于装配线中的控件放置同时最小化每个关节处的人的压力的方法。考虑了其他成本函数,例如最大化可达性或最大化灵活性。该方法的特征在于两个步骤:(1)确定封闭状态下人肢的边界包络线(也称为到达包络线),以及(2)在满足所有约束的同时将工作区包络线朝着优化成本函数的方向移动。通过定义肢体工作空间相对于目标点的新位置和方向,可以建立符合给定约束的人体工程学设计。该方法的优势在于能够可视化放置范围设计问题,以及适用于计算机实现的广泛适用的数学公式。此外,由于人体工程学设计问题的确是优化过程,因此在这项工作中使用优化技术可以解决其他现存的问题。使用许多示例演示了公式和代码。

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