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A Fundamental-and-Harmonic Dual-Frequency Doppler Radar System for Vital Signs Detection Enabling Radar Movement Self-Cancellation

机译:用于生命体征检测的基本和谐波双频多普勒雷达系统,可实现雷达运动自抵消

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This paper proposes and presents a cost-effective fundamental-and-harmonic dual-frequency (FHDF) Doppler radar system for vital signs detection from a mobile radar platform. The proposed FHDF radar architecture concurrently transmits the fundamental signal component (FSC) and its inherent second harmonic signal component (SHSC) of the voltage-controlled oscillator toward opposite directions. The FSC is transmitted toward a target in motion, while the SHSC is transmitted toward a stationary low-cost reflector. For the receiver, a coherent dual-band dual-low-IF architecture is derived and proposed for the first time. This architecture can concurrently receive the reflected FSC that is phase modulated by both motions of the target and the radar platform, and the reflected SHSC that is phase modulated only by the motion of the radar platform, without aliasing, thus enabling the reduction of the overall radar size, power consumption, and system cost. Through the subtraction of a pertinent information contained in the received SHSC from the information embedded in the received FSC using an adaptive noise cancellation technique, the resulting signal contains the desired information that is free of motion artifacts from a moving radar platform. Experimental results show that the proposed radar system is capable of extracting human vital signs, including respiration and heartbeat, even in the presence of a large radar platform movement. By using the proposed FHDF radar system, a see-through-wall vital signs detection from a mobile radar platform can also be successfully conducted without using any additional sensors.
机译:本文提出并提出了一种具有成本效益的基频和谐波双频(FHDF)多普勒雷达系统,用于从移动雷达平台检测生命体征。提出的FHDF雷达架构同时向相反的方向传输压控振荡器的基本信号分量(FSC)及其固有的二次谐波信号分量(SHSC)。 FSC朝向运动中的目标传输,而SHSC朝向固定的低成本反射器传输。对于接收机,首次提出并提出了一种相干双频双低中频架构。该架构可以同时接收由目标和雷达平台的运动进行相位调制的反射FSC,以及仅由雷达平台的运动进行相位调制的反射SHSC,而不会发生混叠,因此可以减少总体雷达的尺寸,功耗和系统成本。通过使用自适应噪声消除技术从嵌入到接收的FSC中的信息中减去接收到的SHSC中包含的相关信息,结果信号将包含所需信息,该信息中没有来自移动雷达平台的运动伪像。实验结果表明,即使在大型雷达平台运动的情况下,所提出的雷达系统也能够提取人体生命体征,包括呼吸和心跳。通过使用建议的FHDF雷达系统,无需使用任何其他传感器即可成功地从移动雷达平台进行透视墙生命体征检测。

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