Title :
Phase-Locked Loop Noise Reduction via Phase Detector Implementation for Single-Phase Systems
Author :
Thacker, Timothy ; Boroyevich, Dushan ; Burgos, Rolando ; Wang, Fred
Author_Institution :
PowerHub Syst., Blacksburg, VA, USA
fDate :
6/1/2011 12:00:00 AM
Abstract :
A crucial component of grid-connected converters is the phase-locked loop (PLL) control subsystem that tracks the grid voltage´s frequency and phase angle. Therefore, accurate fast-responding PLLs for control and protection purposes are required to provide these measurements. This paper proposes a novel feedback mechanism for single-phase PLL phase detectors using the estimated phase angle. Ripple noise appearing in the estimated frequency, most commonly the second harmonic under phase-lock conditions, is reduced or eliminated without the use of low-pass filters, which can cause delays to occur and limits the overall performance of the PLL response to dynamic changes in the system. The proposed method has the capability to eliminate the noise ripple entirely and, under extreme line distortion conditions, can reduce the ripple by at least half. Other modifications implemented through frequency feedback are shown to decrease the settling time of the PLL up to 50%. Mathematical analyses with the simulated and experimental results are provided to confirm the validity of the proposed methods.
Keywords :
circuit feedback; circuit noise; frequency estimation; mathematical analysis; phase detectors; phase locked loops; power convertors; voltage control; PLL control subsystem; feedback mechanism; frequency estimation; frequency feedback; grid voltage frequency; grid-connected converter; line distortion; mathematical analysis; noise reduction; noise ripple elimination; phase angle; phase-lock condition; phase-locked loop; ripple noise; second harmonic; single-phase PLL phase detector; single-phase system; Harmonic analysis; Mathematical model; Mixers; Noise; Phase locked loops; Power harmonic filters; Transient analysis; Grid interconnection; phase-locked loops (PLLs); single-phase control; state-variable feedback;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2010.2069070