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Highly Linear Phase-Canceling Self-Injection-Locked Ultrasonic Radar for Non-Contact Monitoring of Respiration and Heartbeat

机译:高度线性相位取消自喷自注射锁定超声雷达,用于呼吸和心跳的非接触式监测

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摘要

A novel phase-canceling demodulation scheme to improve the linearity of a self-injection-locked (SIL) ultrasonic radar is proposed with the goal of solving the null detection problem and accurately sensing large displacements of a moving target. A proportional-integral (PI) controller regulates the phase of the injection signal and cancels the Doppler phase shift by tuning a delay in the received echo signal, and this tunable delay serves as the radar output, which is linearly proportional to the displacement of the target. Without assuming weak injection, the frequency and phase equations for an SIL oscillator are derived, supporting the construction of a plant model and the design of a PI controller. Also, a new ultrasonic radar equation is presented for estimating the radar detection range. The SIL radar with phase regulation is operated in its anti-phase injection mode for better performance. The proposed design is implemented on an FPGA to make a 40 kHz continuous-wave ultrasonic radar. The maximum detectable peak-to-peak motion is up to 120 mm (approximately 14 wavelengths of displacement), with a total harmonic distortion as low as 2.3% for the detection of 1 Hz harmonic motion. The radar is used to detect the human chest movement for non-contact monitoring of the respiratory rate and heart rate. Due to the high linearity and sensitivity, the radar is capable of faithfully detecting the relatively large involuntary body movements and lung movements while still preserving the weak heartbeat rhythm buried in them, with the average error of measured heart rates less than 1 BPM.
机译:提出了一种新的相位消除解调方案,提出了一种改进自喷锁定(SIL)超声雷达的线性度,其目的是解决空检测问题,准确地感测移动目标的大位移。比例积分(PI)控制器调节注射信号的相位,并通过调谐所接收的回声信号中的延迟来取消多普勒相移,并且这种可调延迟用作雷达输出,这与雷达输出线性成比例的目标。不假设弱注射,导出SIL振荡器的频率和相位方程,支持植物模型的结构和PI控制器的设计。而且,提出了一种新的超声波雷达方程,用于估计雷达检测范围。具有相位调节的SIL雷达在其抗相注射模式下操作以进行更好的性能。所提出的设计在FPGA上实现,以制备40kHz的连续波超声雷达。最大可检测峰 - 峰值运动高达120mm(大约14个位移),对于1 Hz谐波运动的检测,总谐波失真低至2.3%。雷达用于检测对呼吸速率和心率的非接触监测的人胸部运动。由于线性高和灵敏度高,雷达能够忠实地检测相对较大的非自愿体型和肺部运动,同时仍然保持埋在其中的弱心跳节奏,测量的心率低于1bpm的平均误差。

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