Title :
Input impedance of voltage source converter with stationary frame linear current regulators and phase-locked loop
Author :
Bo Wen ; Boroyevich, Dushan ; Burgos, Rolando ; Mattavelli, Paolo
Author_Institution :
Center for Power Electron. Syst. (CPES), Virginia Tech, Blacksburg, VA, USA
Abstract :
Small-signal stability in balanced three-phase systems can be analyzed using Generalized Nyquist stability Criterion (GNC), which is based on source and load impedances in synchronous rotating (d-q) frame. The derivation of d-q input impedance of controlled power electronics converters is relatively easy in the case that current controller is implemented in d-q reference frame, while the analysis in the case of stationary (α-β) reference frame controller is missing. This paper addresses such analysis for Active Front End (AFE) rectifier with different α-β frame linear current regulators, with a focus on the resonant controllers, and Phase-Locked Loop (PLL). A comparison in terms of input impedance of stationary and rotating frame current controller is also reported. Simulation and experimental results verify the validity of the proposed analysis.
Keywords :
controllers; electric current control; phase locked loops; power control; power convertors; active front end rectifier; balanced three phase systems; controlled power electronics converters; current controller; generalized Nyquist stability criterion; input impedance; load impedances; phase locked loop; resonant controllers; small signal stability; source impedances; stationary frame linear current regulators; synchronous rotating frame; voltage source converter; Converters; Impedance; Phase locked loops; Regulators; Resonant frequency; Transfer functions; Voltage control; Resonant controller; active front end; grid-tied inverter; impedance; stability; synchronous rotating frame; voltage source converters;
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2013 IEEE
Conference_Location :
Denver, CO
DOI :
10.1109/ECCE.2013.6647261