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首页> 外文期刊>Journal of Intelligent & Robotic Systems: Theory & Application >Design and calibration of an opto-mechanical appliance for 3D non-contact orthopedic measurements - Part I: mathematical model and laboratory prototype
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Design and calibration of an opto-mechanical appliance for 3D non-contact orthopedic measurements - Part I: mathematical model and laboratory prototype

机译:用于3D非接触式骨科测量的光机械设备的设计和校准-第一部分:数学模型和实验室原型

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摘要

An opto-mechanical system performing fast and accurate non-contact foot measurements is proposed. By processing the measured data it is possible to get three-dimensional foot models and to design custom-made shoes. This work is subdivided into two parts: in Part I, after introducing the system operating method and describing the vision technology employed, a mathematical model of the system is developed accounting for the main internal parameters of the camera. In order to reduce scanning time and the time necessary to create the 3D foot model, the measured data have been arranged in a particular structure and a suitable acquisition procedure has been developed. A laboratory prototype has been built to test the performances of the system: a detailed analysis of its geometry and of its components is provided as well as a concise description of the simple user interface developed to run and control the system.
机译:提出了一种执行快速且准确的非接触式足部测量的光机械系统。通过处理测量的数据,可以获得三维脚模型并设计定制鞋。这项工作分为两部分:在第一部分中,介绍了系统的操作方法并描述了所采用的视觉技术之后,考虑了相机的主要内部参数,开发了系统的数学模型。为了减少扫描时间和创建3D足部模型所需的时间,已将测量数据布置为特定结构,并开发了合适​​的采集程序。已建立了一个实验室原型来测试系统的性能:提供了对其几何形状及其组件的详细分析,并简要描述了为运行和控制系统而开发的简单用户界面。

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