1. The two-output flyback converter operates in the continuous conduction mode. It may be assumed that the converter is lossless. n: n₁ Vg (1) reee T eee eee R₁ v₁(1) C₁ - + S C₂ R₁₂ V₂(t) - a. Derive a small-signal ac equivalent for this converter. b. Find the small-signal ac equivalent circuit in the generalized canonical form shown below. Give analytical expressions for the generators e(s) and j(s). i (s) e(s)d(s) 1: D D'n: n i(s) L C₁ R₁₁₁(s) v(s) +j(s)d(s) reee می - R₁₂ + V₂(s)
1. The two-output flyback converter operates in the continuous conduction mode. It may be assumed that the converter is lossless. n: n₁ Vg (1) reee T eee eee R₁ v₁(1) C₁ - + S C₂ R₁₂ V₂(t) - a. Derive a small-signal ac equivalent for this converter. b. Find the small-signal ac equivalent circuit in the generalized canonical form shown below. Give analytical expressions for the generators e(s) and j(s). i (s) e(s)d(s) 1: D D'n: n i(s) L C₁ R₁₁₁(s) v(s) +j(s)d(s) reee می - R₁₂ + V₂(s)
Chapter55: Ac Adjustable Frequency Drives
Section: Chapter Questions
Problem 4SQ: What is the advantage of an insulated gate bipolar transistor over a common junction transistor?
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Transcribed Image Text:1. The two-output flyback converter operates in the continuous conduction mode. It may be
assumed that the converter is lossless.
n: n₁
Vg (1)
reee
T
eee
eee
R₁ v₁(1)
C₁
-
+
S
C₂
R₁₂
V₂(t)
-
a. Derive a small-signal ac equivalent for this converter.
b. Find the small-signal ac equivalent circuit in the generalized canonical form
shown below. Give analytical expressions for the generators e(s) and j(s).
i (s)
e(s)d(s)
1: D
D'n: n
i(s) L
C₁
R₁₁₁(s)
v(s)
+j(s)d(s)
reee
می
-
R₁₂
+
V₂(s)
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