Power System Analysis & Design
Power System Analysis & Design
6th Edition
ISBN: 9781305636187
Author: Glover, J. Duncan, Overbye, Thomas J. (thomas Jeffrey), Sarma, Mulukutla S.
Publisher: Cengage Learning,
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Chapter 5, Problem 5.32P

The following parameters are based on a preliminary line design: per unit V S = 1.0 , V R = 0.9 per unit, λ = 5000 km, Z c = 320 Ω , δ = 36.8 ° .

A three-phase power of 700 MW is to be transmitted to a substation located 315 km from the source of power. (a) Determine a nominal voltage level for the three-phase transmission line, based on the practical line-loadability equation. (b) For the voltage level obtained in part (a), determine the theoretical maximum power that can be transferred by the line.

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A three-phase transmission line supplies power to three loads at a voltage 408 Vrms (line to line). The loads are as follows: Load 1: S₁ = 100+ j50 VA Load 2: S₂ = 40-j20 VA Load 3: S3 = 10 + j0 VA Find the magnitude of the line current | Line and the combined power factor of the loads. Hint: Steral \= √3 | Vime |× | Ime | line line
Can you show why the answer to this question R = 199 ohm?
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