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Low-Noise Photoplethysmography Sensor Using Correlated Double Sampling for Heartbeat Interval Acquisition

机译:低噪声光电电机描绘传感器使用相关的双重采样进行心跳间隔采集

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摘要

This study designs a low-power photoplethysmography (PPG) sensor based on the error compensation method for heartbeat interval acquisition. To perform heartbeat monitoring in daily life, it is necessary to obtain long-term and accurate heartbeat interval data with low power consumption, because of the limited size and battery capacity of the PPG sensor. Effective reduction in the power consumption of the sensor requires the duty-cycled LEDs and lowering pulse repetition frequency (PRF), i.e., decreasing the sampling rate. However, these methods reduce the accuracy of the heartbeat interval measurement because of signal-to-noise ratio (SNR) degradation and sampling errors. We propose an algorithm for heartbeat interval error compensation and incorporate a low-noise readout circuit to improve SNR. The readout circuit uses current integration to achieve low duty-cycle LED driving. A correlated double sampling (CDS) is introduced to minimize the random noise arising from the switching operation of the integration circuit. An error compensation method based on the PPG waveform similarity is also introduced using the autocorrelation and linear interpolation. The measurement results obtained from nine subjects show that a total current consumption of 28.2A is achieved with a 20-Hz PRF and 0.3 LED duty cycle. The proposed design effectively reduces the mean absolute error (MAE) of the heartbeat interval to an average of 6.2 ms.
机译:该研究基于心跳间隔采集的误差补偿方法设计了一种低功率的光学质谱(PPG)传感器。为了在日常生活中进行心跳监测,有必要获得低功耗的长期和准确的心跳间隔数据,因为PPG传感器的尺寸有限和电池容量有限。传感器的功耗的有效降低需要占空循环的LED和降低脉冲重复频率(PRF),即降低采样率。然而,由于信噪比(SNR)劣化和采样误差,这些方法降低了心跳间隔测量的准确性。我们提出了一种用于心跳间隔误差补偿的算法,并包含一个低噪声读出电路以改善SNR。读出电路使用电流集成来实现低占空比LED驱动。引入相关的双采样(CD)以最小化来自集成电路的切换操作引起的随机噪声。还使用自相关和线性插值引入了一种基于PPG波形相似性的误差补偿方法。从九个主题获得的测量结果表明,通过20-Hz PRF和0.3 LED占空比实现了28.2A的总电流消耗。所提出的设计有效地将心跳间隔的平均绝对误差(MAE)降低到平均值为6.2ms。

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