Elbow Angle Monitoring and Error Analysis Using a Wearable PDMS Embedded FBG Sensor

IF 4.3 2区 综合性期刊 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Archana Thrikkaikuth Chalackal;Srijith Kanakambaran
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引用次数: 0

Abstract

Elbow flexion and extension are necessary movements for daily tasks. Elbow joint impairments can be brought on by aging, accidents, and repetitive motions making the monitoring of elbow angles critical. In this work, a sensor for elbow angle monitoring during bending and extension using a fiber Bragg grating (FBG) embedded in polydimethylsiloxane (PDMS) with a wearable band is proposed. Two methods for measuring elbow angles, wearable and platform-based sensing are investigated. The wearable sensor-based measurements are consistent over different trials with a linear variation of Bragg wavelength with flexion/extension angle up to 90°. The sensitivities for flexion and extension are 0.0029 and 0.0037 nm/°, respectively. Further, the factors contributing to error in the measurement of elbow angle such as tightness of wearable band, spatial and angular misalignment of the sensor, and the removal and replacement of sensor are studied. The findings show that the error is maximum for an angular misalignment followed by tightly bound sensor and spatial misalignment. The desirable configuration for elbow angle measurement is a tightly bound sensor at the mean position for high mean sensitivity with a tolerable level of error and a left/right-aligned sensor with moderate tightness for minimum error at a low sensitivity. The PDMS-embedded FBG-based wearable sensor, in an optimal configuration, can be used for monitoring elbow angles.
基于可穿戴式PDMS嵌入式FBG传感器的弯头角监测与误差分析
肘关节的弯曲和伸展是日常工作的必要动作。肘关节损伤可由老化、事故和重复运动引起,因此监测肘关节角度至关重要。在这项工作中,提出了一种基于可穿戴带嵌入聚二甲基硅氧烷(PDMS)的光纤布拉格光栅(FBG)在弯曲和伸展过程中监测肘关节角度的传感器。研究了可穿戴式和基于平台的两种弯头角度测量方法。基于可穿戴传感器的测量结果在不同的试验中是一致的,Bragg波长线性变化,弯曲/延伸角高达90°。屈曲和伸展的灵敏度分别为0.0029和0.0037 nm/°。进一步研究了可穿戴带的松紧度、传感器的空间和角度错位、传感器的拆卸和更换等因素对弯头角测量误差的影响。结果表明,当传感器的角度不对准时,误差最大,其次是紧绑定传感器和空间不对准。肘角测量的理想配置是在平均位置上紧密结合的传感器,具有高平均灵敏度和可容忍的误差水平,以及在低灵敏度下具有中等紧度的左/右对齐传感器,以最小误差。基于pdms的嵌入式fbg可穿戴传感器,在最佳配置下,可用于监测弯头角度。
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来源期刊
IEEE Sensors Journal
IEEE Sensors Journal 工程技术-工程:电子与电气
CiteScore
7.70
自引率
14.00%
发文量
2058
审稿时长
5.2 months
期刊介绍: The fields of interest of the IEEE Sensors Journal are the theory, design , fabrication, manufacturing and applications of devices for sensing and transducing physical, chemical and biological phenomena, with emphasis on the electronics and physics aspect of sensors and integrated sensors-actuators. IEEE Sensors Journal deals with the following: -Sensor Phenomenology, Modelling, and Evaluation -Sensor Materials, Processing, and Fabrication -Chemical and Gas Sensors -Microfluidics and Biosensors -Optical Sensors -Physical Sensors: Temperature, Mechanical, Magnetic, and others -Acoustic and Ultrasonic Sensors -Sensor Packaging -Sensor Networks -Sensor Applications -Sensor Systems: Signals, Processing, and Interfaces -Actuators and Sensor Power Systems -Sensor Signal Processing for high precision and stability (amplification, filtering, linearization, modulation/demodulation) and under harsh conditions (EMC, radiation, humidity, temperature); energy consumption/harvesting -Sensor Data Processing (soft computing with sensor data, e.g., pattern recognition, machine learning, evolutionary computation; sensor data fusion, processing of wave e.g., electromagnetic and acoustic; and non-wave, e.g., chemical, gravity, particle, thermal, radiative and non-radiative sensor data, detection, estimation and classification based on sensor data) -Sensors in Industrial Practice
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