IEEE Trans Biomed Circuits Syst. 2019 Feb;13(1):68-79. doi: 10.1109/TBCAS.2018.2879818. Epub 2018 Nov 6.
In this paper, the human body communication (HBC) and level crossing sampling (LCS) are combined to design electronics for a wearable electrocardiograph (ECG). The ECG signals acquired by capacitively coupled electrodes are sampled with LCS in place of conventional synchronous sampling. In order to transmit signals through HBC at low frequencies (100 kHz, 1 MHz), an electric field sensor with high input impedance is adopted as the front end of the HBC receiver. The HBC channel gain is enhanced by more than 30 dB with the electric field sensor. An LCS structure based on the send-on-delta concept is implemented with discrete components to convert the ECG signals into binary impulses. The converted impulses are modulated by an on-off keying modulator and then transmitted via the human body to the receiver. A prototype ECG waist belt is developed with commercially available components and experimentally evaluated. The results indicate that the acquired ECG waveforms exhibit good agreement with regular Ag/AgCl ECG methods. The heartbeat detection using a technique based on the Kadane's algorithm and the power consumption performance of the proposed system are also discussed.
本文将人体通信(HBC)与电平交叉采样(LCS)相结合,设计了一种可穿戴心电图仪(ECG)的电子设备。通过电容耦合电极采集的 ECG 信号采用 LCS 进行采样,而不是传统的同步采样。为了通过 HBC 传输低频信号(100 kHz、1 MHz),采用具有高输入阻抗的电场传感器作为 HBC 接收器的前端。HBC 通道增益通过电场传感器增强了 30dB 以上。基于 delta 发送的 LCS 结构采用离散元件实现,将 ECG 信号转换为二进制脉冲。转换后的脉冲由开关键控调制器调制,然后通过人体传输到接收器。使用市售组件开发了原型 ECG 腰带,并进行了实验评估。结果表明,所获取的 ECG 波形与常规的 Ag/AgCl ECG 方法具有很好的一致性。还讨论了基于 Kadane 算法的心跳检测技术和所提出系统的功耗性能。