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Digital phase correction for multiplexed ADCs in low-cost Six-Port interferometers

机译:低成本六端口干涉仪中多路复用ADC的数字相位校正

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Six-Port based radar systems are often addressing the low-cost metrology market. Currently, the analog-to-digital converter (ADC) is one of the most expensive components as it needs to simultaneously sample the four baseband signals of the Six-Port interferometer. This paper studies the feasibility of digital phase correction techniques to achieve simultaneous sampling with only a single multiplexed ADC in low-cost Six-Port systems. A system demonstrator featuring a low-power 16 bit micro-controller will be shown which compensates the conversion error due to the multiplexing delay with an efficient polyphase implementation leading to a measurement update rate of 2000 distance values per second.
机译:基于六端口的雷达系统通常是解决低成本的计量市场。目前,模数转换器(ADC)是最昂贵的组件之一,因为它需要同时采样六端口干涉仪的四个基带信号。本文研究了数字相位校正技术的可行性,实现了在低成本的六端口系统中仅用单个多路复用ADC进行同时采样。将显示一个具有低功率16位微控制器的系统示范器,其可以提出由于多路复用延迟而具有高效的多相实现,这导致每秒2000距离值的测量更新速率,这补偿了转换误差。

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