3-3. A lossless line has a characteristic impedance of 75 N and is terminated in a load of 300 N. The line is energized by a generator which has an open-circuit output voltage of 20 V (rms) and output impedance of 75 N. The line is assumed to be 2 wavelengths long. a. Find the sending-end impedance. b. Determine the magnitude of the receiving-end voltage. c. Calculate the receiving-end power at 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
Chapter13: Transmission Lines: Transient Operation
Section: Chapter Questions
Problem 13.8P
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3-3. A lossless line has a characteristic impedance of 75 and is terminated in a load of
300 N. The line is energized by a generator which has an open-circuit output voltage of
20 V (rms) and output impedance of 75 N. The line is assumed to be 2 wavelengths
long.
a. Find the sending-end impedance.
b. Determine the magnitude of the receiving-end voltage.
c. Calculate the receiving-end power at the load.
C 100
Transcribed Image Text:3-3. A lossless line has a characteristic impedance of 75 and is terminated in a load of 300 N. The line is energized by a generator which has an open-circuit output voltage of 20 V (rms) and output impedance of 75 N. The line is assumed to be 2 wavelengths long. a. Find the sending-end impedance. b. Determine the magnitude of the receiving-end voltage. c. Calculate the receiving-end power at the load. C 100
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