29. A lossless transmission line of characteristic impedance Z, = 50 ohms is terminated in a load impedance that is to be determined. The VSWR on the transmission line is measured as 5. (a) Determine the load impedance if the distance between successive minima in the VSWR pattern is 0.2 m, and the distance from the load impedance to the first minimum is 0.08 m. (b) Repeat part a if a maximum of the voltage standing wave is found to occur at the termination of the transmission line.

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
Problem 4.10MCQ: Transmission line conductance is usually neglected in power system studies. True False
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29. A lossless transmission line of characteristic impedance Zo = 50 ohms is terminated in a load
impedance that is to be determined. The VSWR on the transmission line is measured as 5.
(a) Determine the load impedance if the distance between successive minima in the VSWR
pattern is 0.2 m, and the distance from the load impedance to the first minimum is
0.08 m.
(b) Repeat part a if a maximum of the voltage standing wave is found to occur at the
termination of the transmission line.
Transcribed Image Text:29. A lossless transmission line of characteristic impedance Zo = 50 ohms is terminated in a load impedance that is to be determined. The VSWR on the transmission line is measured as 5. (a) Determine the load impedance if the distance between successive minima in the VSWR pattern is 0.2 m, and the distance from the load impedance to the first minimum is 0.08 m. (b) Repeat part a if a maximum of the voltage standing wave is found to occur at the termination of the transmission line.
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