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一种利用红外摄像机测量人与物体交互中接触点的方法。

A Method for Measuring Contact Points in Human-Object Interaction Utilizing Infrared Cameras.

作者信息

Hakala Jussi, Häkkinen Jukka

机构信息

Department of Psychology and Logopedics, Faculty of Medicine, University of Helsinki, Helsinki, Finland.

出版信息

Front Robot AI. 2022 Feb 14;8:800131. doi: 10.3389/frobt.2021.800131. eCollection 2021.

Abstract

This article presents a novel method for measuring contact points in human-object interaction. Research in multiple prehension-related fields, e.g., action planning, affordance, motor function, ergonomics, and robotic grasping, benefits from accurate and precise measurements of contact points between a subject's hands and objects. During interaction, the subject's hands occlude the contact points, which poses a major challenge for direct optical measurement methods. Our method solves the occlusion problem by exploiting thermal energy transfer from the subject's hand to the object surface during interaction. After the interaction, we measure the heat emitted by the object surface with four high-resolution infrared cameras surrounding the object. A computer-vision algorithm detects the areas in the infrared images where the subject's fingers have touched the object. A structured light 3D scanner produces a point cloud of the scene, which enables the localization of the object in relation to the infrared cameras. We then use the localization result to project the detected contact points from the infrared camera images to the surface of the 3D model of the object. Data collection with this method is fast, unobtrusive, contactless, markerless, and automated. The method enables accurate measurement of contact points in non-trivially complex objects. Furthermore, the method is extendable to measuring surface contact areas, or patches, instead of contact points. In this article, we present the method and sample grasp measurement results with publicly available objects.

摘要

本文提出了一种测量人与物体交互中接触点的新方法。在多个与抓握相关的领域,如动作规划、可供性、运动功能、人体工程学和机器人抓取等方面的研究,都受益于对受试者手部与物体之间接触点的准确精确测量。在交互过程中,受试者的手会遮挡接触点,这对直接光学测量方法构成了重大挑战。我们的方法通过利用交互过程中从受试者手部到物体表面的热能传递来解决遮挡问题。交互结束后,我们用围绕物体的四个高分辨率红外摄像机测量物体表面散发的热量。一种计算机视觉算法检测红外图像中受试者手指接触物体的区域。一个结构光3D扫描仪生成场景的点云,这使得能够确定物体相对于红外摄像机的位置。然后,我们利用定位结果将从红外摄像机图像中检测到的接触点投影到物体的3D模型表面。用这种方法进行数据采集快速、不显眼、非接触、无标记且自动化。该方法能够准确测量非常复杂物体中的接触点。此外,该方法可扩展到测量表面接触面积或区域,而非接触点。在本文中,我们介绍了该方法以及使用公开可用物体的抓握测量示例结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5018/8883210/f6d95428bc1e/frobt-08-800131-g001.jpg

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