DocumentCode :
1180638
Title :
Harmonic Domain Dynamic Transfer Function of a Nonliner Time-Periodic Network
Author :
Noda, Toshio ; Semlyen, A. ; Iravani, Reza
Author_Institution :
CRIEPI, Japan; University of Toronto, Canada
Volume :
22
Issue :
11
fYear :
2002
Firstpage :
63
Lastpage :
63
Abstract :
This paper presents a new concept called harmonic domain dynamic transfer function (HDDTF), which characterizes the dynamics of a nonlinear time-periodic network as seen from a port (or multiple ports) in terms of the frequency response of harmonic perturbations superimposed on its underlying periodic steady state. It pertains to the transient behavior superimposed on the steady state. The HDDTF is a transfer-function matrix H(s) relating the vectors of harmonic domain input and output endowed with s-domain properties. Because the network can contain saturable (nonlinear) elements and periodically-switching (time-periodic) power electronics components, the HDDTF may be used for the analysis of power quality problems. It may also serve for the identification of a reduced-order dynamic equivalent of a nonlinear time-periodic network to be used in time-domain transient simulations. The HDDTF is obtained by linearization about the periodic steady state of the nonlinear state equations describing a given network. Following the derivation of the HDDTF, a modal analysis to characterize the HDDTF by its diagonalization is presented. Two test systems are used to produce numerical examples.
Keywords :
Damping; Impedance; Power cables; Power system harmonics; Power system transients; Shock absorbers; Steady-state; Testing; Transfer functions; Vibrations; Dynamics; electromagnetic transient analysis; large-scale systems; nonlinear circuits; periodic functions; power electronics; power quality; power system harmonics; saturable cores; transfer functions;
fLanguage :
English
Journal_Title :
Power Engineering Review, IEEE
Publisher :
ieee
ISSN :
0272-1724
Type :
jour
DOI :
10.1109/MPER.2002.4311857
Filename :
4311857
Link To Document :
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