Ven b n a) Von Rw www an 2+1 Rw www FIGURE 12.34 B p 41 R www Zp A 18 Exercise 17 with R₁ = 10 92, and verify your answers with an appropri- ate set of simulations if the operating frequency is 60 Hz. 19. Each impedance Z, in the balanced three-phase system of Fig. 12.34 is constructed using the parallel combination of a 1 mF capacitance, a 100 mH inductance, and a 10 2 resistance. The sources have positive phase sequence and operate at 50 Hz. If V ab- 208/0° V, and Rw = 0, calculate (a) all phase voltages; (b) all line voltages; (c) all three line currents; (d) the total power drawn by the load.

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
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.18P: Let a series RLC network be connected to a source voltage V, drawing a current I. (a) In terms of...
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Number 19
b
2
77
20 J
Rw
www
Vbn
an
2+
Rw
www
FIGURE 12.34
B
p
Zp
R
www
Zp
A
18
Exercise 17 with R₁ = 10 S2, and verify your answers with an appropri-
ate set of simulations if the operating frequency is 60 Hz.
19. Each impedance Z, in the balanced three-phase system of Fig. 12.34 is
constructed using the parallel combination of a 1 mF capacitance, a 100 mH
inductance, and a 1022 resistance. The sources have positive phase sequence
and operate at 50 Hz. If V ab = 208/0° V, and R = 0, calculate (a) all phase
voltages; (b) all line voltages; (c) all three line currents; (d) the total power
drawn by the load.
Transcribed Image Text:b 2 77 20 J Rw www Vbn an 2+ Rw www FIGURE 12.34 B p Zp R www Zp A 18 Exercise 17 with R₁ = 10 S2, and verify your answers with an appropri- ate set of simulations if the operating frequency is 60 Hz. 19. Each impedance Z, in the balanced three-phase system of Fig. 12.34 is constructed using the parallel combination of a 1 mF capacitance, a 100 mH inductance, and a 1022 resistance. The sources have positive phase sequence and operate at 50 Hz. If V ab = 208/0° V, and R = 0, calculate (a) all phase voltages; (b) all line voltages; (c) all three line currents; (d) the total power drawn by the load.
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