Title of article :
A Robust Approach for System Identification in the Frequency Domain
Author/Authors :
B. Gustavsen and A. Semlyen، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Abstract :
Accurate modeling of power system components for
the purpose of electromagnetic transient calculations requires the
frequency dependence of components to be taken into account. In
the case of linear components, this can be achieved by identification
of a terminal equivalent based on rational functions. This paper
addresses the problem of approximating a frequency dependent
matrix ( ) with rational functions for the purpose of obtaining
a realization in the form of matrices , , , as used in state
equations. It is shown that usage of the Vector Fitting approach
leads to a realization in the form of a sum of partial fractions with
a residue matrix for each pole. This can be directly converted
into a realization in the form , , , in which is sparse
and each pole is repeated times with by being the size
of . The number of repetitions can be strongly reduced and
sometimes completely avoided by reducing the rank of the residue
matrices, thereby producing a compacted realization which is
physically more correct and also permits faster time-domain
simulations. The error resulting from the rank-reduction can be
reduced by subjecting the realization to a nonlinear least-squares
procedure, e.g., Gauss–Newton as was used in this work.
Keywords :
Frequency domain fitting , multivariable system , Rational approximation , State equation , system identification.
Journal title :
IEEE TRANSACTIONS ON POWER DELIVERY
Journal title :
IEEE TRANSACTIONS ON POWER DELIVERY