(a) Figure 2 shows a horizontal conductor configuration of a completely transposed 50-Hz, 300- km, 345-kV three-phase overhead transmission line with bundled phase conductors. All conductors have a radius of 0.74 cm with a 30-cm bundle spacing and each phase has two conductors per bundle. 30 cm 6m B 30 cm 6m 30 cm Determine the series inductance and capacitance per phase per kilometre of the line (b) Assume the transmission line is lossless, determine: (i) The surge impedance of the line (ii) The voltage regulation of the line if the receiving-end load is 800 MW at 0.8 power factor lagging and at 330-kV

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
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(a)
Figure 2 shows a horizontal conductor configuration of a completely
transposed 50-Hz, 300- km, 345-kV three-phase overhead transmission
line with bundled phase conductors. All conductors have a radius of 0.74
cm with a 30-cm bundle spacing and each phase has two conductors per
bundle.
30 cm
6m
B 30 cm
6m
30 cm
Determine the series inductance and capacitance per phase per
kilometre of the line
(b) Assume the transmission line is lossless,
determine: (i) The surge impedance of
the line
(ii) The voltage regulation of the line if the receiving-end load is 800
MW at 0.8 power factor lagging and at 330-kV
Transcribed Image Text:(a) Figure 2 shows a horizontal conductor configuration of a completely transposed 50-Hz, 300- km, 345-kV three-phase overhead transmission line with bundled phase conductors. All conductors have a radius of 0.74 cm with a 30-cm bundle spacing and each phase has two conductors per bundle. 30 cm 6m B 30 cm 6m 30 cm Determine the series inductance and capacitance per phase per kilometre of the line (b) Assume the transmission line is lossless, determine: (i) The surge impedance of the line (ii) The voltage regulation of the line if the receiving-end load is 800 MW at 0.8 power factor lagging and at 330-kV
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