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Remote HeartRate Measurement based on Signal Feature Detection in Time Domain

机译:基于时域信号特征检测的远程心率测量

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Remote-photoplethysmography (rPPG) is a contactless method which can measure Blood Volume Pulse (BVP) and several vital signals from human faces. Until now, most existing techniques depend on frequency analysis and regard the signal component with largest energy as Heart Rate (HR). Nonetheless, the property, that frequency analysis could not identify the instantaneous HR changes restricts the applications on Heart Rate Variability (HRV) analysis and Cardiac Arrhythmia Detection. Consequently, this paper proposes a time domain systolic peak selection algorithm. It reaches 89% Suc5 in stationary case and 90% Suc10 in indoor scenario which are neck and neck with frequency domain analysis. At the same time, the comparison method, Rei-En, gets Suc10 lower than 80% in both situations. We investigate the influence of dicrotic notch and utilize a concise method to prevent wrong Inter-beat interval (IBI) detection for HR and HRV estimation. Benefiting from the characteristic of time domain analysis, the first HR output could be estimated within five seconds, which is much shorter than seventeen seconds in frequency domain analysis. The results suggest that the proposed algorithm improves instantaneity and provides faster first output of rPPG in HR, HRV estimation.
机译:远程光电容积描记术(rPPG)是一种非接触式方法,可以测量血容量脉冲(BVP)和人脸的一些重要信号。到目前为止,大多数现有技术都依赖于频率分析,并将能量最大的信号分量视为心率(HR)。尽管如此,频率分析无法识别瞬时HR变化的特性限制了其在心率变异性(HRV)分析和心律失常检测中的应用。因此,本文提出了一种时域收缩期峰值选择算法。通过频域分析,在固定情况下达到89%的Suc5,在室内情况下达到90%的Suc10。同时,比较方法Rei-En在两种情况下都使Suc10低于80%。我们调查了重瓣切口的影响,并采用一种简洁的方法来防止心跳和HRV估计错误的心跳间隔(IBI)检测。得益于时域分析的特性,可以在5秒内估算出第一个HR输出,这比频域分析中的17秒要短得多。结果表明,所提出的算法提高了瞬时性,并在HR,HRV估计中提供了更快的rPPG首次输出。

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