Design of co-axial fed broadband single layer rectangular microstrip patch antenna for wireless applications

M. Kartikeyan, J. Kaur, R. Khanna
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引用次数: 9

Abstract

In present work, a novel co-axial fed single layer E-shaped rectangular micro strip patch antenna with broadband behavior for wireless local area network (WLAN) and world-wide interoperability for microwave access (Wi-MAX) applications is proposed. The micro strip antenna has a planar geometry that consists of a ground, a substrate, a patch, and a feed. The basic theory about the proposed structural design, impedance matching, and the radiation characteristics are studied and analyzed using method of finite difference time domain technique. Simulation was conducted using computer simulation technology microwave studio software for optimization of antenna's properties. The proposed antenna has a frequency bandwidth of about 712 MHz (5.16-5.88 GHz) at −10 dB return loss which is sufficient to make the antenna useful for 5.2/5.8 GHz WLAN and 5.5 GHz Wi-MAX application. The WLAN standard requires the antenna to cover 5.15-5.35 GHz and 5.725-5.825 GHz frequency bands and Wi-MAX requires the antenna to cover 5.25-5.85 GHz frequency band. Maximum achievable gain over the entire frequency band is 5.5 dBi. To meet the demanding bandwidth specification, a substrate of low dielectric constant is selected to obtain a compact radiating structure. Furthermore, reflection coefficient is below −10 dB over the entire frequency band at the input of the optimized E-shaped micro strip patch antenna with 50-Ω system impedance.
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无线同轴馈电宽带单层矩形微带贴片天线的设计
在本工作中,提出了一种新型同轴馈电单层e形矩形微带贴片天线,该天线具有宽带性能,可用于无线局域网(WLAN)和微波接入(Wi-MAX)应用的全球互操作性。微带天线具有由地、基板、贴片和馈电组成的平面几何结构。利用时域有限差分技术,对所提出的结构设计、阻抗匹配和辐射特性的基本理论进行了研究和分析。利用计算机仿真技术微波工作室软件进行仿真,优化天线的性能。该天线的频率带宽约为712 MHz (5.16-5.88 GHz),回波损耗为- 10 dB,足以使该天线适用于5.2/5.8 GHz WLAN和5.5 GHz Wi-MAX应用。WLAN标准要求天线覆盖5.15-5.35 GHz和5.725-5.825 GHz频段,Wi-MAX要求天线覆盖5.25-5.85 GHz频段。整个频带的最大可实现增益为5.5 dBi。为了满足带宽要求,选择低介电常数的衬底以获得紧凑的辐射结构。优化后的e形微带贴片天线在输入端整个频段的反射系数小于−10 dB,系统阻抗为50-Ω。
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33
审稿时长
16 weeks
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