首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Hemodynamic Sensing of 3-D Fingertip Force by Using Nonpulsatile and Pulsatile Signals in the Proximal Part
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Hemodynamic Sensing of 3-D Fingertip Force by Using Nonpulsatile and Pulsatile Signals in the Proximal Part

机译:通过近端非搏动和搏动信号对3D指尖力进行血流动力学传感

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摘要

This study proposed a novel sensing method of 3-D contact force at a fingertip by using a photoplethysmogram (PPG) device on the proximal part of a finger. The proposed system detects nonpulsatile and pulsatile components of PPG signals from both sides of the proximal part, extracts 16 feature values related to the contact force, and estimates the 3-D force by using a multiple linear regression model. In the validation experiments, the participants wore a PPG device at the proximal parts of their index fingers and applied a contact force at the fingertips for the 11 types of touch actions. The results indicated that satisfactory agreements are observed between the system outputs and the reference forces by the calibrated force sensor. Moreover, the results revealed that the most effective number of feature values corresponded to six for the higher reproducible sensing. Although the development of the effective calibration method is expected to increase robustness, we realized that the proposed method can potentially be used for a 3-D input user interface.
机译:这项研究提出了一种新颖的3D接触力传感方法,该方法通过在手指近端使用光电容积描记(PPG)装置进行。拟议的系统从近端两侧检测PPG信号的非搏动分量和脉动分量,提取与接触力有关的16个特征值,并使用多元线性回归模型估算3-D力。在验证实验中,参与者在其食指的近端佩戴了PPG设备,并针对11种类型的触摸动作在指尖施加了接触力。结果表明,通过校准的力传感器,可以在系统输出和参考力之间观察到令人满意的一致性。此外,结果表明,对于更高的可重复感测,特征值的最有效数量对应于六个。尽管开发有效的校准方法有望提高鲁棒性,但我们意识到所提出的方法可以潜在地用于3D输入用户界面。

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