Department of Ortho and MSK Science, University College London, London HA7 4LP, UK.
Sensors (Basel). 2023 Apr 30;23(9):4433. doi: 10.3390/s23094433.
The detection of an object slipping within the grasp of a prosthetic hand enables the hand to react to ensure the grasp is stable. The computer controller of a prosthetic hand needs to be able to unambiguously detect the slide from other signals. Slip can be detected from the surface vibrations made as the contact between object and terminal device shifts. A second method measures the changes in the normal and tangential forces between the object and the digits. After a review of the principles of how the signals are generated and the detection technologies are employed, this paper details the acoustic and force sensors used in versions of the Southampton Hand. Attention is given to the techniques used in the field. The performance of the Southampton tube sensor is explored. Different surfaces are slid past a sensor and the signals analysed. The resulting signals have low-frequency content. The signals are low pass filtered and the resulting processing results in a consistent response across a range of surfaces. These techniques are fast and not computationally intensive, which makes them practical for a device that is to be used daily in the field.
假肢手能够检测到物体在其抓握中的滑动,从而对手进行反应以确保抓握稳定。假肢手的计算机控制器需要能够明确地从其他信号中检测到滑动。滑动可以从物体与末端设备之间的接触发生转移时产生的表面振动中检测到。第二种方法测量物体和手指之间的法向力和切向力的变化。在回顾了信号产生的原理和所采用的检测技术之后,本文详细介绍了南安普顿手的声学和力传感器。本文还关注了该领域中使用的技术。研究了南安普顿管传感器的性能。将不同的表面滑过传感器并对信号进行分析。得到的信号具有低频内容。对信号进行低通滤波,处理结果在一系列表面上产生一致的响应。这些技术速度快,计算量不大,这使得它们适用于每天在现场使用的设备。