NEAR-FIELD DIPOLE RADIATION DYNAMICS THROUGH FDTD MODELING

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dc.contributor.author Radzevicius S.J.
dc.contributor.author Chen C.C.
dc.contributor.author Peters L.
dc.contributor.author Daniels J.J.
dc.date.accessioned 2022-01-20T03:41:52Z
dc.date.available 2022-01-20T03:41:52Z
dc.date.issued 2003
dc.identifier https://elibrary.ru/item.asp?id=1330002
dc.identifier.citation Journal of Applied Geophysics, 2003, 52, 2-3, 75-91
dc.identifier.issn 0926-9851
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/34436
dc.description.abstract We use finite-difference time-domain (FDTD) numerical simulations to study horizontal dipole radiation mechanisms and patterns near half-space interfaces. Time snapshots illustrating propagation of wavefronts at an instance in time are included with antenna patterns to provide a visualization tool for understanding antenna radiation properties. Near-field radiation patterns are compared with far-field asymptotic solutions and the effects of electrical properties, antenna height, and observation distance are investigated through numerical simulations. Numerical simulations show excellent agreement with measured data collected over a water-filled tank. Near-field H-plane radiation patterns are broader and contain radiation maxima beyond the critical angle predicted by far-field solutions. A large amplitude E-plane radiation lobe is located directly below the antenna in all simulations, while the two large amplitude sidelobes are less distinct and occur at larger incidence angles than predicted by far-field solutions. Radiation patterns resemble far-field solutions by a distance of 10 wavelengths, except near the critical angle where H-plane radiation maxima and E-plane sidelobes occur at larger incidence angles than predicted by far-field solutions.
dc.subject GPR
dc.subject RADIATION PATTERNS
dc.subject DIPOLE ANTENNAS
dc.subject FDTD MODELING
dc.title NEAR-FIELD DIPOLE RADIATION DYNAMICS THROUGH FDTD MODELING
dc.type Статья


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