Effect of VCO Non-Linearity on Non-Contact Vital Signs Detection in CW and FMCW Radars

S. Lakhote, Sumit Kumar, Gaurab Banerjee
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Abstract

Frequency modulated continuous wave (FMCW) radars are being widely used for vital signs detection due to their capability of range determination. Compared to continuous wave (CW) radars, this additional feature of FMCW radars helps in distinguishing between multiple people and targets. In this paper, the impact of voltage controlled oscillator (VCO) non-linearity on vital signs detection is evaluated with detailed mathematical analysis and MATLAB simulations using a transistor-level nonlinearity model. We demonstrate that vital signs detection is indeed possible with a non-linear VCO, when it is used in CW and FMCW radars. This also leads to the conclusion that expensive linear waveform generation techniques are not needed in indoor vital signs monitoring applications. This can substantially reduce the cost of radars-on-chip.
VCO非线性对连续波和FMCW雷达非接触生命体征检测的影响
调频连续波雷达(FMCW)由于具有一定的测距能力,在生命体征检测中得到了广泛的应用。与连续波(CW)雷达相比,FMCW雷达的这一附加功能有助于区分多人和目标。本文采用晶体管级非线性模型,通过详细的数学分析和MATLAB仿真,评估了压控振荡器(VCO)非线性对生命体征检测的影响。我们证明,当非线性压控振荡器用于连续波和FMCW雷达时,生命体征检测确实是可能的。这也导致结论,在室内生命体征监测应用中不需要昂贵的线性波形生成技术。这可以大大降低片上雷达的成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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