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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >High-Precision Motion Detection Using Low-Complexity Doppler Radar With Digital Post-Distortion Technique
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High-Precision Motion Detection Using Low-Complexity Doppler Radar With Digital Post-Distortion Technique

机译:利用低复杂度多普勒雷达和数字后失真技术进行高精度运动检测

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摘要

Owing to the low complexity and high level of system integration, the quadrature direct-conversion architecture is widely used in Doppler radar for noncontact detection of slow periodic motions such as mechanical vibrations and physiological motions of respiration and heartbeat. However, precise detection of the complete motion pattern has been challenging due to the high-pass characteristics of the ac-coupled baseband circuitry. A few techniques have been proposed to preserve the actual motion pattern in radar sensing based on hardware modifications that add system complexity and cost. In this paper, a digital post-distortion (DPoD) technique is proposed to compensate for the signal distortions in the digital baseband domain. Without any cumbersome hardware modification, the complete pattern of slow periodic motions can be detected using a simple quadrature direct-conversion architecture with ac-coupled baseband. Experimental results show that the proposed Doppler radar with the DPoD technique is robust to compensate signal distortions and can be used for precise detection of slow Doppler motions (near dc) where ac coupling typically attenuates the signal.
机译:由于低复杂度和高系统集成度,正交直接转换架构被广泛用于多普勒雷达中,用于非接触式检测慢速周期性运动,例如机械振动以及呼吸和心跳的生理运动。然而,由于交流耦合基带电路的高通特性,精确检测完整的运动模式一直具有挑战性。已经提出了一些基于硬件修改来保留雷达传感中实际运动模式的技术,这些修改会增加系统的复杂性和成本。本文提出了一种数字后失真(DPoD)技术来补偿数字基带域中的信号失真。无需进行任何繁琐的硬件修改,就可以使用带有交流耦合基带的简单正交直接转换架构来检测慢周期运动的完整模式。实验结果表明,采用DPoD技术的多普勒雷达具有很强的补偿信号失真的能力,可用于精确检测慢速多普勒运动(接近直流),而交流耦合通常会衰减信号。

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