Ohmic Resistance Correction for an Inductive Modulator in DC-Condition Biassed Plasma Antennas, While Modulation the Signal in the VLF Band

In this research, the performance of an inductive modulator during energy injection into a straight rod plasma antenna, activated using a DC electric discharge, has been experimentally investigated. The primary focus of this study is on correcting one of the parameters of the inductive modulator, sp...

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Main Authors: Mahshad Salimiyan, Bahram Jazi, Morteza Shafiei
Format: Article
Language:English
Published: Wiley 2025-01-01
Series:Active and Passive Electronic Components
Online Access:http://dx.doi.org/10.1155/apec/3239863
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author Mahshad Salimiyan
Bahram Jazi
Morteza Shafiei
author_facet Mahshad Salimiyan
Bahram Jazi
Morteza Shafiei
author_sort Mahshad Salimiyan
collection DOAJ
description In this research, the performance of an inductive modulator during energy injection into a straight rod plasma antenna, activated using a DC electric discharge, has been experimentally investigated. The primary focus of this study is on correcting one of the parameters of the inductive modulator, specifically its ohmic resistance. The variations in the ohmic resistance of the modulator with respect to frequency in the very low frequency (VLF) range, between 100 kHz and 50 MHz, are analyzed. This analysis is conducted under varying pressures within the plasma antenna tube. Additionally, the effect of the modulator’s position, whether near or far from the cathode, on the modified ohmic resistance variations is examined and simulated in this study.
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publishDate 2025-01-01
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spelling doaj-art-140e175c65d94de6b4e5b63e44fcdffc2025-08-20T03:11:33ZengWileyActive and Passive Electronic Components1563-50312025-01-01202510.1155/apec/3239863Ohmic Resistance Correction for an Inductive Modulator in DC-Condition Biassed Plasma Antennas, While Modulation the Signal in the VLF BandMahshad Salimiyan0Bahram Jazi1Morteza Shafiei2Department of Photonics-PlasmaDepartment of Photonics-PlasmaDepartment of Photonics-PlasmaIn this research, the performance of an inductive modulator during energy injection into a straight rod plasma antenna, activated using a DC electric discharge, has been experimentally investigated. The primary focus of this study is on correcting one of the parameters of the inductive modulator, specifically its ohmic resistance. The variations in the ohmic resistance of the modulator with respect to frequency in the very low frequency (VLF) range, between 100 kHz and 50 MHz, are analyzed. This analysis is conducted under varying pressures within the plasma antenna tube. Additionally, the effect of the modulator’s position, whether near or far from the cathode, on the modified ohmic resistance variations is examined and simulated in this study.http://dx.doi.org/10.1155/apec/3239863
spellingShingle Mahshad Salimiyan
Bahram Jazi
Morteza Shafiei
Ohmic Resistance Correction for an Inductive Modulator in DC-Condition Biassed Plasma Antennas, While Modulation the Signal in the VLF Band
Active and Passive Electronic Components
title Ohmic Resistance Correction for an Inductive Modulator in DC-Condition Biassed Plasma Antennas, While Modulation the Signal in the VLF Band
title_full Ohmic Resistance Correction for an Inductive Modulator in DC-Condition Biassed Plasma Antennas, While Modulation the Signal in the VLF Band
title_fullStr Ohmic Resistance Correction for an Inductive Modulator in DC-Condition Biassed Plasma Antennas, While Modulation the Signal in the VLF Band
title_full_unstemmed Ohmic Resistance Correction for an Inductive Modulator in DC-Condition Biassed Plasma Antennas, While Modulation the Signal in the VLF Band
title_short Ohmic Resistance Correction for an Inductive Modulator in DC-Condition Biassed Plasma Antennas, While Modulation the Signal in the VLF Band
title_sort ohmic resistance correction for an inductive modulator in dc condition biassed plasma antennas while modulation the signal in the vlf band
url http://dx.doi.org/10.1155/apec/3239863
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