= 200/0° A balanced Y-connected generator with terminal voltage Vn volts is connected to a balanced-A load whose impedance is 10/40° ohms per phase. The line impedance between the source and load is 0.5/80° ohm for each phase. The generator neutral is grounded through an impedance of j5 ohms. The generator sequence impedances are given by Z0 = j7, Z = jl5, and Z2 = j10 ohms. Draw the sequence networks for this system and determine the sequence components of the line currents. %3D

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 A balanced Y-connected generator with terminal voltage Vbc 5 200/08 volts is connected to a balanced-D load whose impedance is 10/408 ohms per phase. The line impedance between the source and load is 0.5/808 ohm for each phase. The generator neutral is grounded through an impedance of j5 ohms. The generator sequence impedances are given by Zg0 5 j7, Zg1 5 j15, and Zg2 5 j10 ohms. Draw the sequence networks for this system and determine the sequence components of the line currents.

200 /0°
A balanced Y-connected generator with terminal voltage Vbe
volts is connected to a balanced-A load whose impedance is 10/40° ohms
per phase. The line impedance between the source and load is 0.5/80°
ohm for each phase. The generator neutral is grounded through an
impedance of j5 ohms. The generator sequence impedances are given by
Z0 = j7, Z = j15, and Z2 = j10 ohms. Draw the sequence networks for
this system and determine the sequence components of the line currents.
'g0
'gl
'g2
Transcribed Image Text:200 /0° A balanced Y-connected generator with terminal voltage Vbe volts is connected to a balanced-A load whose impedance is 10/40° ohms per phase. The line impedance between the source and load is 0.5/80° ohm for each phase. The generator neutral is grounded through an impedance of j5 ohms. The generator sequence impedances are given by Z0 = j7, Z = j15, and Z2 = j10 ohms. Draw the sequence networks for this system and determine the sequence components of the line currents. 'g0 'gl 'g2
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