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Wave Propagation on an Overhead Multiconductor in a High-Frequency Region
50
Citations
15
References
2014
Year
Electromagnetic WaveElectrical EngineeringEngineeringHigh-frequency DeviceAntennaWave PropagationTransmission LineTransverse Magnetic PropagationHigh-frequency ApproximationEarth ResistivityComputational ElectromagneticsRadio PropagationWave Propagation CharacteristicsElectromagnetic Compatibility
Carson's, Pollaczek's, Wise's, and Sunde's earth-return impedances of an overhead line have been examined, and errors involved in the formulas are explained. Modified Pollaczek's and Carson's/Sunde's formulas are described. Wave propagation characteristics on a multiconductor in a high-frequency region are evaluated by adopting the modified earth-return impedance and Wise's earth-return admittance. Sommerfeld-Goubau propagation in a high-frequency region, which shows transition between transverse electromagnetic and transverse magnetic propagation, has been confirmed in the calculated results which agree with those predicted by Kikuchi for a single conductor. On a multiconductor system, it is found that the aerial mode also shows Sommerfeld-Goubau propagation when the separation between conductors is large and the earth resistivity is high.
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