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Screen-Printed Piezoresistive Sensors for Monitoring Pressure Distribution in Wheelchair

机译:丝网印刷压阻传感器,用于监测轮椅中的压力分布

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摘要

Prolonged sitting inadequacies cause pressure ulcer to many individuals, especially to disadvantaged with reduced mobility. The measurement of distributed pressure and detection of irregular sitting postures is essential for preventing the risk of developing pressure ulcer. In this paper, a pressure sensing system capable of recognizing sitting postures by means of measuring interface pressure through printed pressure sensors is presented. A thin and flexible large area sensor is screen-printed using silver flake and carbon particle inks and comprises 16 sensing elements. For the evaluation of practical usability, the sensor characterization is carried out by conducting stability, repeatability, drift, and bending tests. The performance of the sensor is checked under varying environmental conditions. Sitting pasture detection accuracy above 80 % is achieved using a classification algorithm for four different sitting postures. Pressure distribution is monitored at a scanning rate of 10 Hz. A low-power and small form factor of readout electronics enables a compact packaging inside the seat cushion. The presented sensor design targets smart wheelchairs, but it is extendable to much larger areas, for example, to be used in beds. The proposed sensing system would be of a great assistance for caregivers and health professionals.
机译:长时间的坐姿不足会给许多人造成压疮,尤其是行动不便的弱势人群。测量分布压力和检测不规则的坐姿对于防止发生压疮的风险至关重要。本文提出了一种压力感应系统,该系统能够通过打印的压力传感器测量界面压力来识别坐姿。薄而灵活的大面积传感器使用银薄片和碳颗粒墨水进行丝网印刷,并包含16个传感元件。为了评估实用性,通过进行稳定性,可重复性,漂移和弯曲测试对传感器进行表征。在变化的环境条件下检查传感器的性能。使用针对四种不同坐姿的分类算法,可以实现80%以上的坐牧检测精度。以10 Hz的扫描速率监视压力分布。低功耗和小尺寸的读取电子设备可实现座垫内部的紧凑包装。提出的传感器设计针对智能轮椅,但是它可以扩展到更大的区域,例如用于床上。拟议的传感系统将为护理人员和卫生专业人员提供极大的帮助。

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