On the Synchronization of Uncoupled Multistatic PMCW Radars

David Werbunat, Julian Aguilar, Mohanid Almarashly,Vinzenz Janoudi,Simon Stephany, Daniel Gil Gaviria,Ahmet Cagri Ulusoy,Christian Waldschmidt

IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES(2024)

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摘要
Radar networks and multistatic synthetic aperture radars (SARs) allow overcoming the limitations of single radar sensors. However, a good synchronization of the radar sensors is crucial to avoid performance loss due to phase noise and frequency offsets. While this is usually done via cables or dedicated synchronization signals, digital radars allow for new techniques. This work proposes a new concept for the synchronization of phase-modulated continuous wave (PMCW) radars. The synchronization is performed solely by digital signal processing on the receiver side, adapting techniques known from digital communications. It mitigates effects caused by incoherency, which are. These are phase noise, carrier LO frequency offsets and phase deviations of the local oscillator (LO), and sampling frequency offsets. At first, the impact of these effects is mathematically derived and analyzed in detail. Then, the proposed synchronization concept is presented, and its performance is thoroughly evaluated. Very good results are obtained not only in simulations but also in measurements with a 77-GHz radar demonstrator.
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关键词
Radar,Synchronization,Phase noise,Sensors,Radio frequency,Frequency synchronization,Codes,Bistatic,carrier frequency offset (CFO),carrier recovery,digital radar,multistatic,phase noise,phase-modulated continuous wave (PMCW) radar,pseudo noise (PN) radar,pseudorandom binary sequence (PRBS) radar,pseudorandom noise (PRN) radar,radar network,sample frequency offset(SFO),sample rate offset,synchronization,timing recovery
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