A three-phase motor, Y connection, 380-V, 100-kW, 110- kVA, 50 Hz. Calculate the value of capacitor must be conne in parallel with each phase load to enhance power factor to 0.94 lagging? Design a band pass filter of the form in Fig. 5 with a lower cut off frequency of 25.3 kHz and an upper cut off frequency of 25.6 kHz. Determine L, C, and Q. vj(t) L R= 18 ΚΩ Figure 5 + vo(t) -

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
Chapter12: Power System Controls
Section: Chapter Questions
Problem 12.16P
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A three-phase motor, Y
connection, 380-V, 100-kW, 110-
kVA, 50 Hz. Calculate the value
of capacitor must be conne
in parallel with each phase load
to enhance power factor to 0.94
lagging?
Design a band pass filter of the
form in Fig. 5 with a lower cut
off frequency of 25.3 kHz and an
upper cut off frequency of 25.6
kHz. Determine L, C, and Q.
vj(t)
+
C
L
R= 18 ΚΩ
Figure 5
+
v(t)
Transcribed Image Text:A three-phase motor, Y connection, 380-V, 100-kW, 110- kVA, 50 Hz. Calculate the value of capacitor must be conne in parallel with each phase load to enhance power factor to 0.94 lagging? Design a band pass filter of the form in Fig. 5 with a lower cut off frequency of 25.3 kHz and an upper cut off frequency of 25.6 kHz. Determine L, C, and Q. vj(t) + C L R= 18 ΚΩ Figure 5 + v(t)
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