Title :
Phase-Error Measurement and Compensation in PLL Frequency Synthesizers for FMCW Sensors—II: Theory
Author :
Pichler, Markus ; Stelzer, Andreas ; Gulden, Peter ; Seisenberger, Claus ; Vossiek, Martin
Author_Institution :
Linz Center of Mechatronics GmbH, Linz
fDate :
6/1/2007 12:00:00 AM
Abstract :
Synthesizers for the generation of frequency- or phase-modulated signals are required in communications, sensing, and many other fields and applications. The widespread use of phase-locked loops (PLLs) as major building blocks in current systems requires accurate models and methods for eliminating the influence of statistical and deterministic errors in the synthesized signals. We propose a novel iterative phase-error-measurement and -compensation procedure applicable in PLL-based synthesizers, for which the mathematical background is presented, and a detailed algorithmic description is given in this work. From a mathematical PLL system model and its response to a periodic excitation by the modulating signal, a method for measuring the instantaneous output signal phase and the actual transfer function of the PLL is derived. It is shown how this knowledge can advantageously be used for pre-distorting the synthesizer input signal to eliminate deterministic errors and to obtain an accurate output phase curve.
Keywords :
CW radar; FM radar; error compensation; frequency synthesizers; phase locked loops; phase measurement; FMCW sensors; PLL-based synthesizers; frequency synthesizers; modulating signal; periodic excitation; phase-error compensation; phase-error measurement; phase-locked loops; phase-modulated signals; transfer function; Frequency measurement; Frequency synthesizers; Iterative algorithms; Mathematical model; Phase locked loops; Phase measurement; Phase modulation; Signal generators; Signal synthesis; Transfer functions; Chirp radar; frequency synthesizers; phase measurement; phase-locked loops (PLLs);
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2007.895517