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Zeitschriftenartikel:

M. Hauser, M. Hofbauer:
"FPGA-Based EO-PLL With Repetitive Control forHighly Linear Laser Frequency Tuning in FMCWLIDAR Applications";
IEEE Photonics Journal, Vol. 14 (2022), No. 1; 8 S.



Kurzfassung englisch:
We developed a digital electro-optical phase-locked-loop (EO-PLL) utilizing a repetitive control, allowing the use of very nonlinear tunable lasers for frequency-modulated continous-wave (FMCW) light detection and ranging (LIDAR) applications. This approach allows reducing the phase error of continuously repeated frequency chirps to virtually zero by using information of prevoius chirps and additionally guaranties sub-second settling times. With this method, much higher nonlinearities in the laser frequency modulation slope γ are tolerable than with common realtime analog PLLs. Furthermore, we appplied a Goertzel algorithm generalized to non-integer multiples of the fundamental frequency to achieve a mean measurement precision of 5.41 µm and 16.35 µm at a distance from the interferometer baseline of 3 m and 10.3 m, respectively.

Schlagworte:
Electro-optical phase-locked-loop (EO-PLL), frequency-modulated continuous-wave (FMCW) LIDAR, Goertzel algorithm, range finding, repetitive control, velocimetry.


"Offizielle" elektronische Version der Publikation (entsprechend ihrem Digital Object Identifier - DOI)
http://dx.doi.org/10.1109/JPHOT.2021.3139053


Erstellt aus der Publikationsdatenbank der Technischen Universität Wien.