A Low-Resolution Adc Proof-Of-Concept Development For A Fully-Digital Millimeter-Wave Joint Communication-Radar

2020 IEEE INTERNATIONAL CONFERENCE ON ACOUSTICS, SPEECH, AND SIGNAL PROCESSING(2020)

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摘要
A fully-digital mmWave wideband JCR places difficult demands of power consumption and hardware complexity on the receivers' analog-to-digital converters (ADCs). To address these concerns, we present a low-complexity proof-of-concept (PoC) development for a wideband MIMO JCR that uses a mmWave communications waveform and low-resolution ADCs, while maintaining a separate radio-frequency chain per antenna. To accurately characterize the radar performance of our developed PoC tested, we conduct experiments using a trihedral corner reflector and apply traditional as well as advanced receiver processing algorithms. The results demonstrate that our MIMO PoC platform with a fully-digital JCR waveform at 73 GHz carrier frequency, 2 GHz bandwidth, and 1-bit ADCs achieves high range/direction estimation accuracy as well as high detection capability with a wide field of view.
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关键词
analog-to-digital converters,low-complexity proof-of-concept development,wideband MIMO JCR,mmWave communications waveform,low-resolution ADCs,separate radio-frequency chain,radar performance,developed PoC,advanced receiver processing algorithms,MIMO PoC platform,fully-digital JCR waveform,carrier frequency,1-bit ADC,low-resolution ADC proof-of-concept development,fully-digital millimeter-wave joint communication-radar,fully-digital mmWave wideband JCR places difficult demands,power consumption,hardware complexity,frequency 73.0 GHz,frequency 2.0 GHz
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