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Development of a heart rate detection algorithm using a non-contact doppler radar via signal elimination

机译:通过信号消除使用非接触多普勒雷达的心率检测算法的开发

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Non-contact heart rate measurement is more convenient than conventional ECGs. So, a number of algorithms have been investigated to measure non-contact heart rate using a Doppler radar. However, elimination of environmental noise is still a challenge. We propose algorithms applying new filtering methods to efficiently detect the Heart rate. The Signal Elimination (SE) facilitates noise acquisition gradually and eliminates it from the previous signal. First, low-frequency noise is acquired from the original signal and removed from it. Second, high-frequency noise is acquired and removed from the previous signal. The Heart rate is then detected via differential polarization and threshold values. Experiments to assess the performance of the Heart rate detection algorithm were conducted on five subjects in a shielded room blocked from external electromagnetic wave. The algorithm has a mean sensitivity of 97.8 %, a positive predictivity of 96.2 %, and an error of 1.6 % compared with the Heart rate count in the reference Biopac. The performance of the proposed algorithm was better than that of the recently studied Heart rate detection algorithm using Doppler radar. Compared with Biopac, the Doppler radar facilitated a robust detection of the heart rate suggesting that the Doppler radar is an effective alternative to contact electrocardiogram in patients with burns or physical disorders.
机译:非接触式心率测量比传统心电图更方便。因此,已经研究了许多算法以使用多普勒雷达测量非接触心率。然而,消除环境噪音仍然是一个挑战。我们提出了应用新过滤方法的算法,以有效地检测心率。信号消除(SE)逐渐促进噪声采集并从先前的信号中消除它。首先,从原始信号获取低频噪声并从中删除。其次,获取高频噪声并从先前的信号中取出。然后通过差分极化和阈值检测心率。评估心率检测算法性能的实验是在从外部电磁波阻挡的屏蔽室中的五个受试者中进行的。该算法的平均敏感性为97.8%,阳性预测性为96.2%,与参考生物酸的心率计数相比,误差为1.6%。所提出的算法的性能优于使用多普勒雷达最近研究的心率检测算法的性能。与BIOPAC相比,多普勒雷达促进了对心率的稳健检测,表明多普勒雷达是燃烧或物理障碍患者接触心电图的有效替代方案。

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