Gao Xiaomeng, Singh Aditya, Yavari Ehsan, Lubecke Victor, Boric-Lubecke Olga
Electrical Engineering Department, University of Hawaii at Manoa, Honolulu 96822, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2012;2012:1602-5. doi: 10.1109/EMBC.2012.6346251.
Non-contact Doppler radar has been used extensively for detection of physiological motion. Most of the results published to date have been focused on estimation of the physiological rates, such as respiratory rate and heart rate, with CW and modulated waveforms in various settings. Accurate assessment of chest displacement may take this type of monitoring to the new level, by enabling the estimation of associated cardiopulmonary volumes, and possibly pulse pressure. To obtain absolute chest displacement with highest precision, full nonlinear phase demodulation of the quadrature radar outputs must be performed. The accuracy of this type of demodulation is limited by the drifting received RF power, varying dc offset, and channel quadrature imbalance. In this paper we demonstrate that if relatively large motion is used to calibrate the system, smaller motion displacement may be acquired with the accuracy on the order of 30 µm.
非接触式多普勒雷达已被广泛用于检测生理运动。迄今为止发表的大多数结果都集中在各种环境中使用连续波(CW)和调制波形估计生理速率,如呼吸率和心率。通过能够估计相关的心肺容积以及可能的脉压,对胸部位移的准确评估可能会将这种监测提升到新的水平。为了以最高精度获得绝对胸部位移,必须对正交雷达输出进行全非线性相位解调。这种解调的精度受到接收射频功率漂移、变化的直流偏移和通道正交不平衡的限制。在本文中,我们证明,如果使用相对较大的运动来校准系统,则可以以大约30微米的精度获取较小的运动位移。