Plasma antennas driven by 5–20 kHz AC power supply
The experiments described in this work were performed with the aim of introducing a new plasma antenna that was excited by a 5–20 kHz alternating current (AC) power supply, where the antenna was transformed into a U-shape. The results show that the impedance, voltage standing-wave ratio (VSWR), radi...
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Online Access: | http://dx.doi.org/10.1063/1.4938084 |
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doaj-6265e11d3ecc44fcbd27b7477d30ffdc2020-11-25T01:18:24ZengAIP Publishing LLCAIP Advances2158-32262015-12-01512127114127114-1110.1063/1.4938084025512ADVPlasma antennas driven by 5–20 kHz AC power supplyJiansen Zhao0Yuli Chen1Yang Sun2Huafeng Wu3Yue Liu4Qiumeng Yuan5Merchant Marine College, Shanghai Maritime University, Shanghai, 201306, ChinaMerchant Marine College, Shanghai Maritime University, Shanghai, 201306, ChinaMerchant Marine College, Shanghai Maritime University, Shanghai, 201306, ChinaMerchant Marine College, Shanghai Maritime University, Shanghai, 201306, ChinaMerchant Marine College, Shanghai Maritime University, Shanghai, 201306, ChinaMerchant Marine College, Shanghai Maritime University, Shanghai, 201306, ChinaThe experiments described in this work were performed with the aim of introducing a new plasma antenna that was excited by a 5–20 kHz alternating current (AC) power supply, where the antenna was transformed into a U-shape. The results show that the impedance, voltage standing-wave ratio (VSWR), radiation pattern and gain characteristics of the antenna can be controlled rapidly by varying not only the discharge power, but also by varying the discharge frequency in the range from 5 to 20 kHz. When the discharge frequency is adjusted from 10 to 12 kHz, the gain is higher within a relatively broad frequency band and the switch-on time is less than 1 ms when the discharge power is less than 5 W, meaning that the plasma antenna can be turned on and off rapidly.http://dx.doi.org/10.1063/1.4938084 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jiansen Zhao Yuli Chen Yang Sun Huafeng Wu Yue Liu Qiumeng Yuan |
spellingShingle |
Jiansen Zhao Yuli Chen Yang Sun Huafeng Wu Yue Liu Qiumeng Yuan Plasma antennas driven by 5–20 kHz AC power supply AIP Advances |
author_facet |
Jiansen Zhao Yuli Chen Yang Sun Huafeng Wu Yue Liu Qiumeng Yuan |
author_sort |
Jiansen Zhao |
title |
Plasma antennas driven by 5–20 kHz AC power supply |
title_short |
Plasma antennas driven by 5–20 kHz AC power supply |
title_full |
Plasma antennas driven by 5–20 kHz AC power supply |
title_fullStr |
Plasma antennas driven by 5–20 kHz AC power supply |
title_full_unstemmed |
Plasma antennas driven by 5–20 kHz AC power supply |
title_sort |
plasma antennas driven by 5–20 khz ac power supply |
publisher |
AIP Publishing LLC |
series |
AIP Advances |
issn |
2158-3226 |
publishDate |
2015-12-01 |
description |
The experiments described in this work were performed with the aim of introducing a new plasma antenna that was excited by a 5–20 kHz alternating current (AC) power supply, where the antenna was transformed into a U-shape. The results show that the impedance, voltage standing-wave ratio (VSWR), radiation pattern and gain characteristics of the antenna can be controlled rapidly by varying not only the discharge power, but also by varying the discharge frequency in the range from 5 to 20 kHz. When the discharge frequency is adjusted from 10 to 12 kHz, the gain is higher within a relatively broad frequency band and the switch-on time is less than 1 ms when the discharge power is less than 5 W, meaning that the plasma antenna can be turned on and off rapidly. |
url |
http://dx.doi.org/10.1063/1.4938084 |
work_keys_str_mv |
AT jiansenzhao plasmaantennasdrivenby520khzacpowersupply AT yulichen plasmaantennasdrivenby520khzacpowersupply AT yangsun plasmaantennasdrivenby520khzacpowersupply AT huafengwu plasmaantennasdrivenby520khzacpowersupply AT yueliu plasmaantennasdrivenby520khzacpowersupply AT qiumengyuan plasmaantennasdrivenby520khzacpowersupply |
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1725142779515895808 |