传感器辅助远程操作,最大限度地提高残疾人的操作能力

Wentao Yu, B. E. Fritz, N. Pernalete, Michael Jurczyk, R. Dubey
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引用次数: 1

摘要

本文介绍了一种辅助残疾人进行灵巧操作的远程操作系统。本研究希望通过使用基于感官数据的从主到从操作的比例映射来提高远程操作的性能。当使用者由于某些残疾(如肌肉萎缩症、中风或任何形式的病理性震颤)而限制了运动范围时,这尤其有用。辅助功能用于映射,这样人工输入就得到了增强,而不是被计算机取代。一种常见的职业康复测试被称为盒子和块被选择来测试这种传感器辅助功能的有效性。利用现有的传感数据,开发了一种可变缩放方案。在模拟模式下,为盒子和积木测试创建了一个视觉环境。这被用来预测一个残疾人是否能够舒适地完成一项任务。实际试验采用带摄像机和激光测距仪的主从机械手系统进行。在master中添加了一个运动约束来模拟一个有残疾的用户。结果表明,传感器辅助不仅减少了所需的输入运动、空闲时间和执行时间,而且提高了Box和Blocks测试中的操作精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensors assisted telemanipulation for maximizing manipulation capabilities of persons with disabilities
This paper describes a telemanipulation system to assist persons with disabilities perform dexterous manipulation tasks. This research is expected to enhance the teleoperation performance through the use of scaled mapping from master to slave manipulation based upon sensory data. This is particularly useful when the user has restricted range of movements due to certain disabilities such as muscular dystrophy, a stroke, or any form of pathological tremor. Assistance functions are used for mapping such that human input is enhanced rather than superseded by the computer. A common vocational rehabilitation test referred to as Box and Blocks was chosen to test the effectiveness of this sensor-assisted function. A variable scaling scheme was developed using available sensory data. In the simulation mode, a visual environment was created for the Box and Blocks test. This was used to predict if a person with disabilities would be able to perform a task comfortably. The real test was performed using a master and slave manipulator system with a camera and laser range finder. A motion constraint was added to the master to simulate a user with disabilities. The results demonstrated that the sensor assistance not only reduced required input motion, idle time, and execution time, but also increased manipulation accuracy during the Box and Blocks test.
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