Title :
D-Q impedance specification for balanced three-phase AC distributed power system
Author :
Bo Wen ; Boroyevich, Dushan ; Burgos, Rolando ; Mattavelli, Paolo ; Zhiyu Shen
Author_Institution :
Center for Power Electron. Syst., Virginia Tech, Blacksburg, VA, USA
Abstract :
In a dc distributed power system, small-signal stability is studied using Nyquist stability criterion. Forbidden region for the polar plot of the ratio of impedances at the interface between source and load subsystems can be defined. For a given source impedance, forbidden region can be transformed to a load impedance specification. System stability can be assured with certain margin while allowing source and load impedance overlap. Although small-signal stability and its margin of balanced three-phase ac system can be addressed using source and load impedances in synchronous reference (d-q) frame, similar load impedance specification is not reported. This paper discusses the challenge of stability analysis in three-phase ac system, namely its coupled multi-input multi-output (MIMO) nature. Then a method to do load impedances specification in d-q frame is proposed. Condition and limitation of the proposed method is discussed. Simulation and measurement verify the analysis.
Keywords :
Nyquist stability; load regulation; power distribution control; power system stability; D-Q impedance specification; DC distributed power system; MIMO nature; Nyquist stability criterion; balanced three-phase AC distributed power system; d-q frame; forbidden region; load impedance overlap; load impedance specification; multiple input multiple output nature; small-signal stability analysis; synchronous reference frame; Circuit stability; Impedance; Load modeling; MIMO; Power system stability; Stability criteria; Distributed power system; impedance; small-signal stability;
Conference_Titel :
Applied Power Electronics Conference and Exposition (APEC), 2015 IEEE
Conference_Location :
Charlotte, NC
DOI :
10.1109/APEC.2015.7104741