Journal of Electromagnetic Analysis and Applications

Volume 4, Issue 7 (July 2012)

ISSN Print: 1942-0730   ISSN Online: 1942-0749

Google-based Impact Factor: 0.55  Citations  h5-index & Ranking

Characteristics of AC-biased Plasma Antenna and Plasma Antenna Excited by Surface Wave

HTML  XML Download Download as PDF (Size: 764KB)  PP. 279-284  
DOI: 10.4236/jemaa.2012.47039    5,980 Downloads   10,408 Views  Citations

ABSTRACT

Plasma’s conductive and dielectric properties have been well known for decades. Plasma antenna is a general terms representing using plasma as a conductive medium to transmit or reflect signals. It has unique properties like low RCS (radar cross section), variable impedance and instant on-off capability. Previous plasma antenna uses RF power to generate the plasma column. We developed AC-biased (alternating current) plasma antenna, which has larger operation frequency scale and lower sustaining power. Signals propagated are coupled into the plasma antenna via capacitive coupling. Impedance of the plasma shifts slightly with the AC current. Radiation pattern of the plasma antenna is less uniform than metal antenna and its gain is related to AC power, from the measuring results of AC-biased plasma antenna we found its advantages compare to the plasma antenna excited by the surface wave.

Share and Cite:

A. Zhu, Z. Chen, J. Lv and J. Liu, "Characteristics of AC-biased Plasma Antenna and Plasma Antenna Excited by Surface Wave," Journal of Electromagnetic Analysis and Applications, Vol. 4 No. 7, 2012, pp. 279-284. doi: 10.4236/jemaa.2012.47039.

Cited by

[1] Design and fabrication of Coaxial Plasma Waveguide Filter with the ability to reconfigure the Frequency band
Journal of Electrical and …, 2023
[2] Analysis of dipole plasma antenna using kinetic method and FDTD numerical approach
… -International Journal of …, 2022
[3] An Overview on the Implementation of Surface Wave Driven Plasma Antennas
… IEEE Symposium on …, 2021
[4] The Effect of Frequency and Waveform of AC Excitation on U-Shaped Monopole Plasma Antenna
2020
[5] تاثیر فرکانس و شکل موج تحریک جریان متناوب بر آنتن پلاسمایی تک قطبی U شکل‎
2020
[6] Novel transmitter designs for magnetic resonance imaging
2018
[7] Synthesis of Plasma Corrugated-Rod Antenna for Multi-Gigabit Wireless Technology
2018
[8] Numerical Study on a Wideband Plasma Folded-Dipole Antenna
2017
[9] Effect of Plasma Antenna Shape on the Antenna Performance Using Plasma Computer Simulation Technology (CST)
2017
[10] A Reconfigurable Monopole Antenna With Fluorescent Tubes Using Plasma Windowing Concepts for 4.9-GHz Application
Plasma Science, IEEE Transactions on, 2015
[11] Nonlinear Behavior of Plasma Antenna Vibrator
Plasma Science, IEEE Transactions, 2014
[12] Numerical investigation into the performance of reconfigurable gaseous plasma antennas
2014
[13] Characteristics of Impedance for Plasma Antenna
Computer Engineering and Networking, 2014
[14] Performances Analysis of Cylindrical Monopole Plasma Antenna
2013
[15] Design and evaluation of a detunable water‐based quadrature HEM11 mode dielectric resonator as a new type of volume coil for high field MRI
2012

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.