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Extracting human breathing rate from the fusion of multiple piezo-resistive membranes

机译:从多个压电膜的熔化中提取人呼吸速率

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E-textile sensors present a real potential since they can be integrated into unobtrusive systems such as garments. They allow the monitoring of physiological parameters without disturbing the operator. Although they are mainly used in the medical field for personal health care, these sensors are increasingly used in our daily activities. In sports, at work or at home, embedded sensors are used for on-line human monitoring and for improving the quality of life. The work presented here concerns the processing and evaluation of new sensors for monitoring respiratory activity. Six piezo-resistive membranes are integrated into the backrest of a seat similar to the one you would expect on a commercial aircraft, allowing for non-obtrusive monitoring. The objective is to extract valid and reliable features from the fusion of these sensors in order to provide a non-obtrusive alternative to chest-straps for monitoring respiratory activity. Results show the developed fusion algorithm performs better than a worn reference (chest strap) both in nominal and agitated contexts for monitoring breathing rate.
机译:电子纺织传感器具有实际潜力,因为它们可以集成到服装等不显眼的系统中。它们允许监测生理参数而不会打扰操作员。虽然它们主要用于医疗领域,用于个人保健,但这些传感器越来越多地用于我们的日常活动。在运动中,在工作或家中,嵌入式传感器用于在线人类监测和提高生活质量。这里提出的工作涉及对监测呼吸活动的新传感器的加工和评估。六个压电膜被整合到类似于您预期的商业飞机上的座椅的靠背中,允许非突兀的监测。该目的是从这些传感器的熔合中提取有效和可靠的特征,以便为监测呼吸活动的胸带提供非突出性替代品。结果显示,发达的融合算法在标称和搅拌背景下的磨损参考(胸带)更好地进行监测呼吸率。

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