IEEE Trans Biomed Eng. 2014 Mar;61(3):725-35. doi: 10.1109/TBME.2013.2288319. Epub 2013 Nov 4.
The designed sensor enables accurate reconstruction of chest-wall movement caused by cardiopulmonary activities, and the algorithm enables estimation of respiration, heartbeat rate, and some indicators of heart rate variability (HRV). In particular, quadrature receiver and arctangent demodulation with calibration are introduced for high linearity representation of chest displacement; 24-bit ADCs with oversampling are adopted for radar baseband acquisition to achieve a high signal resolution; continuous-wavelet filter and ensemble empirical mode decomposition (EEMD) based algorithm are applied for cardio/pulmonary signal recovery and separation so that accurate beat-to-beat interval can be acquired in time domain for HRV analysis. In addition, the wireless sensor is realized and integrated on a printed circuit board compactly. The developed sensor system is successfully tested on both simulated target and human subjects. In simulated target experiments, the baseband signal-to-noise ratio (SNR) is 73.27 dB, high enough for heartbeat detection. The demodulated signal has 0.35% mean squared error, indicating high demodulation linearity. In human subject experiments, the relative error of extracted beat-to-beat intervals ranges from 2.53% to 4.83% compared with electrocardiography (ECG) R-R peak intervals. The sensor provides an accurate analysis for heart rate with the accuracy of 100% for p = 2% and higher than 97% for p = 1%.
该设计的传感器能够准确地重建心肺活动引起的胸壁运动,而算法则能够估计呼吸、心跳率和一些心率变异性(HRV)指标。特别是,采用正交接收器和正切解调以及校准来实现胸位移的高线性表示;采用 24 位 ADC 进行过采样的雷达基带采集,以实现高信号分辨率;采用连续小波滤波器和集合经验模态分解(EEMD)算法进行心肺信号恢复和分离,以便在时域中准确获取心率变异性分析的逐拍间隔。此外,无线传感器在印刷电路板上实现并紧凑集成。所开发的传感器系统已在模拟目标和人体上成功进行了测试。在模拟目标实验中,基带信号噪声比(SNR)为 73.27dB,足以用于心跳检测。解调信号的均方误差为 0.35%,表明解调线性度高。在人体实验中,与心电图(ECG)R-R 峰间隔相比,提取的逐拍间隔的相对误差范围为 2.53%至 4.83%。该传感器提供了准确的心率分析,准确率为 100%(p=2%)及以上,准确率高于 97%(p=1%)。