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Robust Sensor Fusion of Unobtrusively Measured Heart Rate

机译:可靠地融合心率测量技术

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摘要

Contactless vital sign measurement technologies often have the drawback of severe motion artifacts and periods in which no signal is available. However, using several identical or physically different sensors, redundancy can be used to decrease the error in noncontact heart rate estimation, while increasing the time period during which reliable data are available. In this paper, we show for the first time two major results in case of contactless heart rate measurements deduced from a capacitive ECG and optical pulse signals. First, an artifact detection is an essential preprocessing step to allow a reliable fusion. Second, the robust but computationally efficient median already provides good results; however, using a Bayesian approach, and a short time estimation of the variance, best results in terms of difference to reference heart rate and temporal coverage can be achieved. In this paper, six sensor signals were used and coverage increased from 0–90% to 80–94%, while the difference between the estimated heart rate and the gold standard was less than $pm 2$ BPM.
机译:非接触式生命体征测量技术通常具有严重的运动伪影和无信号可用周期的缺点。但是,使用几个相同或物理上不同的传感器,可以使用冗余来减少非接触心率估计中的误差,同时增加可获取可靠数据的时间段。在本文中,我们首次展示了从电容式心电图和光脉冲信号推导出的非接触式心率测量的两个主要结果。首先,伪像检测是实现可靠融合的必要预处理步骤。第二,稳健但计算效率高的中值已经提供了良好的结果。但是,使用贝叶斯方法并在短时间内估算方差,可以获得与参考心率和时空覆盖率不同的最佳结果。在本文中,使用了六个传感器信号,并且覆盖率从0-90%增加到80-94%,而估算的心率和黄金标准之间的差小于$ pm 2 $ BPM。

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