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基于二维激光雷达扫描的电动轮椅机电防撞系统

Mechatronic Anti-Collision System for Electric Wheelchairs Based on 2D LiDAR Laser Scan.

机构信息

Department of Physics and Medical Engineering, Faculty of Mathematics and Applied Physics, Rzeszow University of Technology, Powstańców Warszawy 6, 35-959 Rzeszow, Poland.

Department of Mechanical Engineering, The Faculty of Mechanical Engineering and Aeronautics, Rzeszow University of Technology, Powstańców Warszawy 8, 35-959 Rzeszow, Poland.

出版信息

Sensors (Basel). 2021 Dec 18;21(24):8461. doi: 10.3390/s21248461.

Abstract

Electric wheelchairs make it easier for disabled and elderly people to live, move, interact, and participate in society. Moving a wheelchair in open spaces is relatively easy, but in closed and small spaces, maneuvering is difficult. Solutions to such problems for people with disabilities are applicable to a relatively small group of recipients and are mostly custom-made solutions, whose considerable cost is a significant barrier to accessibility. New technologies can provide an opportunity to improve the quality of life of people with disabilities in this aspect. Using selected elements of complex automation and control systems, cost-effective solutions can be created that facilitate the functioning of people with disabilities. This paper presents an analysis of hazards and problems when maneuvering a wheelchair in narrow passageways, as well as the authors' solution to this problem, and the concept and assumptions of a mechatronic anti-collision system based on 2D LiDAR laser scanners. This solution is composed of a proprietary 2D rotating scanner mechanism that ensures the acquisition of 3D images of the environment around the wheelchair. Preliminary tests of this solution yielded promising results. Further research will include miniaturization of the device.

摘要

电动轮椅使残疾人和老年人的生活、移动、互动和参与社会变得更加容易。在开阔的空间中移动轮椅相对容易,但在封闭和狭小的空间中,操纵轮椅则比较困难。针对残疾人的这些问题的解决方案适用于相对较小的受助人群,并且大多是定制解决方案,其高昂的成本是无障碍通行的一个重大障碍。新技术可以为残疾人在这方面提供改善生活质量的机会。使用复杂的自动化和控制系统的选定元素,可以创建具有成本效益的解决方案,方便残疾人的功能发挥。本文分析了在狭窄通道中操纵轮椅时的危险和问题,以及作者对这个问题的解决方案,还有基于 2D LiDAR 激光扫描仪的机电防撞系统的概念和假设。该解决方案由专有的 2D 旋转扫描仪机制组成,可确保获取轮椅周围环境的 3D 图像。该解决方案的初步测试结果令人鼓舞。进一步的研究将包括设备的小型化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e505/8708947/9ee2f6321f8c/sensors-21-08461-g001.jpg

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