4.3 Article

Integer boundary spur considerations for fractional-N PLL based FMCW radar

期刊

ELECTRONICS LETTERS
卷 56, 期 14, 页码 729-+

出版社

INST ENGINEERING TECHNOLOGY-IET
DOI: 10.1049/el.2020.0764

关键词

CW radar; phase locked loops; waveform generators; FM radar; radar signal processing; fractional-N PLL; low-cost solution; precision frequency ramp requirements; frequency-modulated continuous-wave radar; spurious signals; integer boundary spurs; FMCW radar performance; waveform generation; spur chirps; beat signal; PLL bandwidth; fractional-N phase locked loops; Fresnel ripples; spurious-free dynamic range reduction

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Fractional-N phase locked loops (PLLs) offer a low-cost solution to the precision frequency ramp requirements of frequency-modulated continuous-wave (FMCW) radar. In this application, however, the infamous spurious signals generated by these PLLs have not received adequate analysis. In this Letter, the authors investigate the impact of integer boundary spurs on FMCW radar performance. They show that the offset of these spurs is swept during the course of waveform generation, and that undesirablespur chirpsmanifest in the beat signal as a result. These spur chirps span the radar's intermediate frequency bandwidth and produce Fresnel ripples in the range profile which reduce spurious-free dynamic range. They present simulations and measurements that demonstrate how reduction of PLL bandwidth can be used to suppress these spurii.

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