Q4. (a) A single-phase transmission line has inductive reactance of 25 2. Assuming no compensation is made to the transmission line and the supply voltage is fixed at 1500 V. Calculate the maximum power the line can deliver to a resistive load and the corresponding receiver voltage. A single-phase transmission line has resistance of 35 2. Assuming no compensation is made to the transmission line and supply voltage is fixed at 800 V. Find the maximum power the line can deliver to a resistive load and the (b) corresponding receiver voltage.

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
Chapter4: Transmission Line Parameters
Section: Chapter Questions
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Q4. (a) A single-phase transmission line has inductive reactance of 25 Q. Assuming no
compensation is made to the transmission line and the supply voltage is fixed at
1500 V. Calculate the maximum power the line can deliver to a resistive load and
the corresponding receiver voltage.
A single-phase transmission line has resistance of 35 2. Assuming no
compensation is made to the transmission line and supply voltage is fixed at 800 V.
Find the maximum power the line can deliver to a resistive load and the
corresponding receiver voltage.
(b)
Transcribed Image Text:Q4. (a) A single-phase transmission line has inductive reactance of 25 Q. Assuming no compensation is made to the transmission line and the supply voltage is fixed at 1500 V. Calculate the maximum power the line can deliver to a resistive load and the corresponding receiver voltage. A single-phase transmission line has resistance of 35 2. Assuming no compensation is made to the transmission line and supply voltage is fixed at 800 V. Find the maximum power the line can deliver to a resistive load and the corresponding receiver voltage. (b)
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