is a model with distributed parameters based on
the equivalent circuit depicted in Figure 2c. The
uniformly distributed parameters, in per unit
length, may be listed as follows: Li is the series
inductance, Ri is the loss component of Li, Cik is the
turn-to-turn capacitance, Gik is the loss component
of Cik, Cig is the turn-to-ground capacitance, Gig
is the loss component of Cig, and Mik is the turnto-
turn mutual inductance.
The most accurate representation of a winding
should be based on a multiconductor transmission
line (MTL) model with distributed and frequencydependent
parameters. With the present development
of hardware and software tools such approach
is affordable for representing the complete winding
of a rotating machine, but may be prohibitive
for representing a transformer. In addition, models
for transformers may have to include the
representation of more than one winding, and
is a model with distributed parameters based on
the equivalent circuit depicted in Figure 2c. The
uniformly distributed parameters, in per unit
length, may be listed as follows: Li is the series
inductance, Ri is the loss component of Li, Cik is the
turn-to-turn capacitance, Gik is the loss component
of Cik, Cig is the turn-to-ground capacitance, Gig
is the loss component of Cig, and Mik is the turnto-
turn mutual inductance.
The most accurate representation of a winding
should be based on a multiconductor transmission
line (MTL) model with distributed and frequencydependent
parameters. With the present development
of hardware and software tools such approach
is affordable for representing the complete winding
of a rotating machine, but may be prohibitive
for representing a transformer. In addition, models
for transformers may have to include the
representation of more than one winding, and
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