Q3) A 345-kV, three-phase transmission line delivers 500 MVA, 0.866 power factor lagging, to a three-phase load connected to its receiving end terminals. Assume that the load is delta connected and the voltage at the receiving end is 345 kV. a. Find the complex load impedance per phase. b. Calculate all line currents and phase currents. c. Find the real and reactive power per phase. d. Find the total real and reactive power.

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Q3)
A 345-kV, three-phase transmission line delivers 500 MVA, 0.866 power factor lagging, to a three-phase
load connected to its receiving end terminals. Assume that the load is delta connected and the voltage at
the receiving end is 345 kV.
a. Find the complex load impedance per phase.
b. Calculate all line currents and phase currents.
c. Find the real and reactive power per phase.
d. Find the total real and reactive power.
Transcribed Image Text:Q3) A 345-kV, three-phase transmission line delivers 500 MVA, 0.866 power factor lagging, to a three-phase load connected to its receiving end terminals. Assume that the load is delta connected and the voltage at the receiving end is 345 kV. a. Find the complex load impedance per phase. b. Calculate all line currents and phase currents. c. Find the real and reactive power per phase. d. Find the total real and reactive power.
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Q3)

It is given that:

S=500 MVAPF=0.866Vph=VL-L=3450° kV

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