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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Doppler Radar Motion Sensor With CMOS Digital DC-Tuning VGA and Inverter-Based Sigma-Delta Modulator
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Doppler Radar Motion Sensor With CMOS Digital DC-Tuning VGA and Inverter-Based Sigma-Delta Modulator

机译:具有CMOS数字DC调谐VGA和基于逆变器的Sigma-Delta调制器的多普勒雷达运动传感器

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摘要

In most of the raditional miniature Doppler radar systems, ac coupling is adopted between the radio frequency front-end and baseband amplifier to block the dc offset due to clutter reflection. However, ac coupling causes distortion to low frequency signals and loses the dc information, which represents slowly changing or stationary moment of the target. A dc-coupled radar sensor system using a variable gain amplifier (VGA) with software-configured digital tuning architecture is presented in this paper to realize dc tuning and dc offset calibration. Furthermore, to process the output signals from the VGA, a novel low-voltage low-power inverter-based second-order sigma-delta modulator has been developed. The frequency of mechanical motion can be detected from the spectrum of the presented modulator output digital bit stream without a decimation filter, which can significantly reduce the cost and the power consumption. Furthermore, it can potentially detect the motion amplitude using the relative strength of the harmonics in the spectrum of the output digital bit steam. Experiments show that the presented digital dc-tuning VGA can completely relieve the radar sensor from circuit saturation and the inverter-based sigma-delta modulator can perform under low voltage and low power to accurately detect the movement frequency of the target without a decimation filter. Both the presented VGA and modulator show great potential for integrating a Doppler radar sensor system into a low-power high-accuracy single chip in the future.
机译:在大多数辐射微型多普勒雷达系统中,射频前端和基带放大器之间采用交流耦合,以阻止由于杂波反射而引起的直流偏移。但是,交流耦合会导致低频信号失真,并且会丢失直流信息,这表示目标的变化缓慢或平稳。本文提出了一种使用可变增益放大器(VGA)和软件配置的数字调谐架构的直流耦合雷达传感器系统,以实现直流调谐和直流失调校准。此外,为了处理来自VGA的输出信号,已经开发了一种新颖的基于低压低功率逆变器的二阶sigma-delta调制器。无需抽取滤波器,就可以从提供的调制器输出数字位流的频谱中检测出机械运动的频率,这可以显着降低成本和功耗。此外,它可以利用输出数字位蒸汽频谱中谐波的相对强度来潜在地检测运动幅度。实验表明,所提出的数字直流调谐VGA可以完全消除雷达传感器的电路饱和,并且基于逆变器的sigma-delta调制器可以在低电压和低功率下运行,以精确地检测目标的运动频率而无需抽取滤波器。提出的VGA和调制器都显示出在将来将多普勒雷达传感器系统集成到低功耗高精度单芯片中的巨大潜力。

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