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Digitization of Farm Tractors and Body Models for the Evaluation of Farm Tractors

机译:农用拖拉机与农业拖拉机评价的数字化

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Feature-envelope technique is a method that describes the spatial location and orientation of areas or landmarks of interest with respect to a well-defined, easily duplicated coordinate system. This technique has been tested in a NIOSH study in guiding tractor designers in their placement of tractor control components in order to best accommodate the user population. NIOSH recently measured the human body dimensions of 100 West Virginia farm workers, including whole body surface scans, to examine body size accommodation issues associated with safe farm tractor operation and rollover protective structures. Multivariate anthropometric models were derived from this population based on measurements related to the workstation. The Euclidian distance of each subject for each model was computed, and those that scored the closest were identified as "nearest neighbors". Fifteen of these subjects, representing the extremes plus one mean, were rerecruited and seated in the tractor workstation and their anatomical landmarks were digitized using Faro arm technology. Fourteen landmark point clouds were further simplified using principal component analysis to generate feature ellipsoids for each landmark location with respect to the workstation. Each feature envelope can be thought of as an ellipsoid enclosing a cloud of three-dimensional data points representing the variability in a landmark location. Descriptions of how feature envelopes are created and implemented within the Computer-Assisted Design environment will be presented. The technique can be used in other machine or product safety applications, such as in designing construction vehicle cabs, truck driver compartments, and aircraft cockpits.
机译:特征包络技术是一种方法,该方法描述了对识别良好的,易于复制的坐标系的感兴趣的空间位置和地标或地标。这种技术已经在NIOSH研究中进行了测试,在引导拖拉机设计师的位置,以便最佳地适应用户群体。 Niosh最近测量了100个西弗吉尼亚州农场工人的人体维度,包括全身扫描,检查与安全农用拖拉机运行和翻转保护结构相关的体型住宿问题。基于与工作站相关的测量来源于该群体的多变量人体计量模型。计算每个模型的每个主题的欧几里德距离是计算的,并且得分最接近的人被识别为“最近邻居”。这些受试者的十五个代表极端加上一个平均值,在拖拉机工作站上坐在拖拉机工作站中,他们的解剖标志使用Faro Arm技术数字化。使用主成分分析进一步简化了十四个地标点云,以在工作站上生成每个地标位置的特征椭圆体。每个特征信封都可以被认为是包含代表地标位置的变异性的三维数据点云的椭圆体。将介绍如何在计算机辅助设计环境中创建和实现功能信封的描述。该技术可用于其他机器或产品安全应用,例如在设计建筑车辆驾驶室,卡车驾驶室和飞机驾驶舱中。

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