2016Jisuanji fangzhenRequires access

Simulation & Analysis of Liquid Metal Conical Helical Antenna

Zhou Yun, Fang Shao-jun, Shiqiang Fu, Zhongbao Wang

Open publisher page 0 citations

Abstract

In order to replace the solid metal antenna, a novel liquid metal conical helical antenna was presented. The antenna is easy to adjust its shape. The circularly polarized antenna has the characteristics of small size, high gain, wide bandwidth, and it is easy to reconstruct. Taking maritime satellite communications as an example, the proposed antenna was designed, simulated and optimized for antenna impedance matching with HFSS software, and a good circularly polarized radiation and impedance characteristics for the antenna were obtained. The simulated results show that: in the entire maritime satellite communication work band(1 525-1 660.5 MHz), the gain of the antenna achieves 8.5 d B; the 3 d B axial ratio(AR) bandwidth is 520 MHz. Comparing with the same size solid metal structure(copper), the novel antenna exceeds approximately 30 MHz. Therefore, under the premise of easy reconfiguration, the proposed liquid metal conical helical antenna achieves the performance of the solid metal antennas.

About this research paper

What this paper is about

In order to replace the solid metal antenna, a novel liquid metal conical helical antenna was presented. The antenna is easy to adjust its shape. The circularly polarized antenna has the characteristics of small size, high gain, wide bandwidth, and it is easy to reconstruct. Taking maritime satellite communications as an example, the proposed antenna was designed, simulated and optimized for antenna impedance matching with HFSS software, and a good circularly polarized radiation and impedance characteristics for the antenna were obtained. The simulated results show that: in the entire maritime satellite communication work band(1 525-1 660.5 MHz), the gain of the antenna achieves 8.5 d B; the 3 d B axial ratio(AR) bandwidth is 520 MHz. Comparing with the same size solid metal structure(copper), the novel antenna exceeds approximately 30 MHz. Therefore, under the premise of easy reconfiguration, the proposed liquid metal conical helical antenna achieves the performance of the solid metal antennas.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In order to replace the solid metal antenna, a novel liquid metal conical helical antenna was presented. The antenna is easy to adjust its shape. The circularly polarized antenna has the characteristics of small size, high gain, wide bandwidth, and it is easy to reconstruct. Taking maritime satellite communications as an example, the proposed antenna was designed, simulated and optimized for antenna impedance matching with HFSS software, and a good circularly polarized radiation and impedance characteristics for the antenna were obtained. The simulated results show that: in the entire maritime satellite communication work band(1 525-1 660.5 MHz), the gain of the antenna achieves 8.5 d B; the 3 d B axial ratio(AR) bandwidth is 520 MHz. Comparing with the same size solid metal structure(copper), the novel antenna exceeds approximately 30 MHz. Therefore, under the premise of easy reconfiguration, the proposed liquid metal conical helical antenna achieves the performance of the solid metal antennas.

Key concepts: Antenna factor, Coaxial antenna, Antenna measurement, HFSS, Radiation pattern, Antenna efficiency, Optics, Antenna (radio)

Related papers

Back to paper searchBrowse research topicsOriginal source
Simulation & Analysis of Liquid Metal Conical Helical Antenna — Research Paper | ScholarLens