Computer simulations of a four-element array antenna using polyethylene (PE) substrate and parameter analysis for compact, flexible wireless applications

IF 2.2 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
R. Ramyea, Senthil Kumar Kandasamy, N. Kasthuri
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Abstract

Flexible wireless applications in the C band microwave region require a conformal wideband antenna that resonates equally in all directions. In this paper, a polymer substrate-based array antenna is designed at an operating frequency of 7.3 GHz covering a bandwidth from 5 to 8 GHz. Conventional substrates such as FR4 (flame-retardant) have certain operational constraints with regard to high power, gain, and high dielectric constant (4.4), which results in a narrow impedance bandwidth and high return loss. In order to reduce this, a thermally stable and low-dielectric-constant (2.25) polyethylene (PE) substrate-based antenna is designed with a four-element array. The designed antenna is simulated, and its results are analysed and compared for both substrates. The gain and directivity increased to 6.25 and 6.45 dB, respectively. The return loss and voltage standing wave ratio (VSWR) reduced to −32.57 dB and 0.33. The radiation efficiency for the proposed four-element array antenna with polyethylene substrate was 96.8%. Thus, the resultant gain and efficiency of the polymer substrate antenna are improved compared with conventional antennas. The fabricated four-element array antenna with PE substrate provides a −22.25-dB return loss and standing wave ratio less than 2 through real-time testing at 7.3 GHz.

Abstract Image

使用聚乙烯(PE)衬底的四元阵列天线的计算机模拟和参数分析,用于紧凑,灵活的无线应用
在C波段微波区域的灵活无线应用需要一个在所有方向上均匀共振的共形宽带天线。本文设计了一种基于聚合物基板的阵列天线,工作频率为7.3 GHz,带宽为5 ~ 8 GHz。传统的衬底,如FR4(阻燃剂)在高功率、高增益和高介电常数(4.4)方面有一定的操作限制,导致阻抗带宽窄和回波损耗高。为了减少这种影响,设计了一种热稳定的低介电常数(2.25)聚乙烯(PE)基板天线,采用四元阵列。对所设计的天线进行了仿真,并对两种基板的仿真结果进行了分析和比较。增益和指向性分别增加到6.25和6.45 dB。回波损耗和电压驻波比分别降至- 32.57 dB和0.33。聚乙烯基板四元阵列天线的辐射效率为96.8%。因此,与传统天线相比,聚合物基板天线的增益和效率得到了提高。采用PE衬底制备的四元阵列天线在7.3 GHz下的实时测试结果表明,天线的回波损耗为- 22.25 db,驻波比小于2。
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来源期刊
Journal of Computational Electronics
Journal of Computational Electronics ENGINEERING, ELECTRICAL & ELECTRONIC-PHYSICS, APPLIED
CiteScore
4.50
自引率
4.80%
发文量
142
审稿时长
>12 weeks
期刊介绍: he Journal of Computational Electronics brings together research on all aspects of modeling and simulation of modern electronics. This includes optical, electronic, mechanical, and quantum mechanical aspects, as well as research on the underlying mathematical algorithms and computational details. The related areas of energy conversion/storage and of molecular and biological systems, in which the thrust is on the charge transport, electronic, mechanical, and optical properties, are also covered. In particular, we encourage manuscripts dealing with device simulation; with optical and optoelectronic systems and photonics; with energy storage (e.g. batteries, fuel cells) and harvesting (e.g. photovoltaic), with simulation of circuits, VLSI layout, logic and architecture (based on, for example, CMOS devices, quantum-cellular automata, QBITs, or single-electron transistors); with electromagnetic simulations (such as microwave electronics and components); or with molecular and biological systems. However, in all these cases, the submitted manuscripts should explicitly address the electronic properties of the relevant systems, materials, or devices and/or present novel contributions to the physical models, computational strategies, or numerical algorithms.
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