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Ratiometric Artefact Reduction in Low Power, Discrete-Time, Reflective Photoplethysmography

机译:低功率,离散时间,反射型光电容积描记法的比例伪像减少

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This paper investigates the feasibility of a ratio metric approach to compensating for ambient light and motion artefacts in a reflective photoplethysmography (PPG) sensor suitable for wearable applications. A low-power, discrete-time pulse-oximeter development platform is used to capture both infra-red (IR) and red photoplethysmograms, as well as the ambient light level, such that the data used for analysis has noise levels representative of what a true body sensor network (BSN) device would experience. The performance of a ratiometric artefact reduction technique is tested with both simulated multiplicative noise sources, as well as real motion artefacts to best determine where the limitations of the system lie.
机译:本文研究了比例度量方法补偿适用于可穿戴应用的反射光体积描记器(PPG)传感器中的环境光和运动伪影的可行性。低功耗,离散时间脉搏血氧仪开发平台用于捕获红外(IR)和红色光电容积描记图以及环境光水平,因此用于分析的数据具有的噪声水平代表了什么真正的人体感应器网络(BSN)设备会遇到。比例伪影减少技术的性能已通过模拟的乘积噪声源以及实际运动伪影进行了测试,以最好地确定系统的局限性所在。

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