b. It is required to examine the performance of the system when adding a phase-lead network to the control system, as shown in FIGURE Q3b. Phase-lead network Plant R(s) Y(s) G(s) G,6) H(s) = 1 FIGURE Q3b Select the values of the zero and pole of the phase-lead network if the pole of the network is at least twice as large as the zero, given the equation for the phase-lead network is s+ a G.(s) s+ b Hence, formulate the characteristic equation of the overall systems. C. Using root-locus technique, analyze the gain of the control system K.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter3: Power Transformers
Section: Chapter Questions
Problem 3.30P: Reconsider Problem 3.29. If Va,VbandVc are a negative-sequence set, how would the voltage and...
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b.
It is required to examine the performance of the system when adding
a phase-lead network to the control system, as shown in FIGURE Q3b
Phase-lead network
Plant
R(s)
+
Y(s)
G(s)
H(s) = 1
FIGURE Q3b
Select the values of the zero and pole of the phase-lead network if the pole
of the network is at least twice as large as the zero, given the equation for
the phase-lead network is
5+ a
G.(s) =
s+ b
Hence, formulate the characteristic equation of the overall systems.
Using root-locus technique, analyze the gain of the control system K.
C.
Transcribed Image Text:b. It is required to examine the performance of the system when adding a phase-lead network to the control system, as shown in FIGURE Q3b Phase-lead network Plant R(s) + Y(s) G(s) H(s) = 1 FIGURE Q3b Select the values of the zero and pole of the phase-lead network if the pole of the network is at least twice as large as the zero, given the equation for the phase-lead network is 5+ a G.(s) = s+ b Hence, formulate the characteristic equation of the overall systems. Using root-locus technique, analyze the gain of the control system K. C.
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