Wave Number and Input Impedance of a VLF Insulated Linear Antenna in an Anisotropic Ionosphere

Author:

Zhang Shitian12,Peng Huaiyun2,Wei Bing1,Han Xiange1,Wang Maoyan3ORCID

Affiliation:

1. School of Physics and Optoelectronic Engineering, Xidian University, Xi’an, China

2. National Key Laboratory of Electromagnetic Environment, Qingdao, China

3. School of Physics, University of Electronic Science and Technology of China, Chengdu, China

Abstract

We report a method to obtain the wave number and input impedance of a very low frequency (VLF) insulated linear antenna in an anisotropic ionosphere. Due to the anisotropy, electromagnetic fields in the ionosphere are decomposed into the ordinary wave and extraordinary wave. Wave equations for the layered structure are applied to access the wave number of the insulated antenna in the ionosphere via the derivation of the eigenvalue equation by using boundary conditions. The expression for the wave number is given based on some approximation formulas. Then, King’s antenna theory is further employed to solve the input impedance and current distribution of the antenna in the anisotropic medium. After the validation of the method is performed, near-field characteristics for an insulated antenna with different medium parameters in the anisotropic ionosphere are discussed. Effects of the electric density and geomagnetic field of the time-and space-varying anisotropic ionosphere on the distribution of normalized current are analyzed. This finding provides a promising avenue for getting electromagnetic characteristics of space-borne antennas.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering

Reference35 articles.

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4. VLF Current Distribution and Input Impedance of an Arbitrarily Oriented Linear Antenna in a Cold Plasma

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