• Title/Summary/Keyword: Stacked microstrip antenna

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Design of Stacked Bow-Tie Antenna for Wireless LAN (무선 LAN을 위한 적층 구조의 Bow-Tie Antenna의 설계)

  • 고영호
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.11 no.8
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    • pp.1455-1461
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    • 2000
  • There are many researches to increase bandwidth of the microstrip patch antenna for wireless LAN. In spite of broad bandwidth, Bow-Tie antenna has disadvantages that are low gain and big size. In this paper, stacked Bow-Tie microstrip patch antenna for wireless LAN is designed in 5.725 ~5.825 GHz band. This antenna has characteristics that are broadband bandwidth, high gain and small size compared with microstrip patch antenna. In simulated results, the return loss is -34.2 dB at 5.78 GHz and bandwidth is 11.345% for VSWR 2:1 and 7.75%for VSWR 1.5:1. In measured results, the return loss is -38.45 dB at 5.78 GHz and bandwidth is 13% for VSWR 2:1 and 5.6% for VSWR 1.5:1. It has 73.16$^{\circ}$ -3dB beam width and 6.5dB gain.

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Impedance and Mutual Coupling Characteristics of a Probe-Fed Stacked Circular Microstrip Two-Element Array Antenna (Probe로 급전되는 적층형 원형 마이크로스트립 2소자 배열 안테나의 임피던스 및 상호 결합 특성)

  • 이면주;남상욱
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.18 no.11
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    • pp.1767-1773
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    • 1993
  • In this paper, the coupling characteristics as well as the self and the mutual Impedance of a two-element probe-fed stacked circular microstrip array antennas are presented. A full wave analysis for the structure is performed In the spectral domain using the vector Hankel transform(VHT). Also, we presented measured results for the impedance, the coupling characteristics of the antenna and the variation of the coupling with the distance between the two elements. Finally, the calculated and measured results are shown to agree well wlth each other through comparisons.

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High-Gain and Wideband Microstrip Antenna Using Glass/Epoxy Composite and Nomex Honeycomb (유리섬유/에폭시 복합재료와 허니컴을 이용한 고성능의 마이크로스트립 안테나 설계)

  • You C.S.;Hwang W.
    • Proceedings of the Korean Society For Composite Materials Conference
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    • 2004.04a
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    • pp.1-4
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    • 2004
  • In this paper we developed Composite-Smart-Structures(CSS) using sandwich structure composed of Glass/Epoxy laminates and Nomex honeycomb and microstrip antenna. Transmission/reflection theory shows that antenna performances can be improved due to multiple reflection by Glass/Epoxy facesheet, and honeycomb is used for air gap between antenna and facesheet. Stacked radiating patches are used for the wideband. Facesheet and honeycomb thicknesses are selected considering both wideband and high gain. Measured electrical performances show that CSS has wide bandwidth over $10\%$ and higher gain by 3.5dBi than initially designed antenna, and no doubt it has excellent mechanical performances by sandwich effect given by composite laminates and honeycomb core. The CSS concept can be extended to give a useful guide for manufacturers of structural body panels as well as antenna designers, promising innovative future communication technology.

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Ferrite-based wideband circularly polarized microstrip antenna design

  • Mashhadi, Mostafa;Komjani, Nader;Rejaei, Behzad;Ghalibafan, Javad
    • ETRI Journal
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    • v.41 no.3
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    • pp.289-297
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    • 2019
  • In this paper, a wideband, circularly polarized patch antenna is proposed that leverages the unidirectional resonant modes of a circular patch mounted on top of a grounded dielectric-ferrite substrate. The proposed antenna is fed via the proximity coupling method and several parasitically coupled patches are placed on a dielectric superstrate to enhance the impedance bandwidth of the antenna. The resonant modes of the structure rotate only in the clockwise or counter clockwise directions. In the frequency range where the effective permeability of the ferrite layer is negative, the resonance frequencies of these modes differ significantly, which produces a large axial ratio (AR) bandwidth. For the proposed antenna, the numerical results show the 10 dB impedance bandwidth to be around 44% and the 3 dB axial ratio bandwidth to be higher than 64%.

Characteristics of Wideband Patch Antenna with an L-Strip-Fed Structure (L-스트립 급전구조를 갖는 적층 패치 안테나의 특성)

  • 전주성;김장욱;김종규
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.13 no.4
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    • pp.366-372
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    • 2002
  • A wideband stacked patch antenna fed by an L-strip feeder is studied experimentally. The objective of this paper is to design small wideband antenna for PCS and IMT-2000 service. Experimental results confirm that an impedance bandwidth(VSWR$\leq$2) of 704.7 MHz(35.95 %) is achieved at PCS and IMT-2000 frequency band. The studied antenna can be designed easily for extension of away because it has simple structure.

Analysis of aperture coupled stacked microstrip array antenna (슬롯결합 적층 마이크로스트립 배열 안테나 해석)

  • 장병준;이용국;문호원;윤영중;박한규
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.21 no.3
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    • pp.753-762
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    • 1996
  • In this paper, aperture coupled stacked microstrip array antennas are proposed and their operating characteristics are analyzed based on analytical. In order to evaluate mutual coupling between slot-coupled microstrip patches in finite array, analysis uses the reciprocity theorem and the spectral domain Green's functions for dielectric slab in a moment method solution for the unknown patches and solts current distrbution. By introducing an N-port equivalent network, the impedance matrix of an affay of N-element slot-coupled patches is evaluated directly from its network current matix of order N$^{2}$, and it can be programmed to be run on a PC. Numerical results show mutual coupling, radiation pattern, active reflection coefficient versus scan angle, radiation efficiency and active element gain pattern.

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Design of a Miniature Wideband H-shaped Microstrip Antenna for WLAN (WLAN용 소형 광대역 H-모양 마이크로스트립 안테나)

  • 이진우;이종철;윤서용;이문수
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.41 no.3
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    • pp.15-20
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    • 2004
  • In this paper, a wideband two-layer H-shaped microstrip antenna for WLAN is designed. To increase the bandwidth of microstrip patch antenna a configuration of stacked type using parastic element is used. Furthermore, to reduce the size of microstrip patch antenna, two techniques are employed . the first one is H-shaped patch type and the second one is that the main radiator and parastic patch are shorted to the ground plane using ten shorting posts. The antenna bandwidth and radiation characteristics are calculated by ENSEMBLE ver. 5.0 simulation software, and compared with the experimental results. Experiment results show that the bandwidth of antenna in 740MHz centered at 5.46㎓(13.5%), which is close agreement with the calculations, 770MHz(13%). Also, the antenna size can be reduced by 71.5% compared with the half wavelength rectangular microstrip antenna using the same substrate at the same frequency.

Design of Broadband Microstrip Antenna for 2.5GHz with Inverted Parasite Patch and the Proximity Stub (근접 스터브와 뒤집힌 기생 패치를 이용한 2.5GHz용 광대역 마이크로스트립 안테나의 설계)

  • Cho, Ki-Ryang;Kim, Dae-Ik;Kim, Gun-Kyun
    • The Journal of the Korea institute of electronic communication sciences
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    • v.14 no.3
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    • pp.467-474
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    • 2019
  • In this paper, we studied a method for a broadband stacked patch antenna structure which is widely used for bandwidth improvement. The characteristics according to the distance between the two patches were analyzed and the impedance matching was optimized by connecting parallel open stubs to the main patch feed line. The shunt matching stub is inserted underneath the parasitic patch and so it does not require additional space, which enables the proposed antenna structure to be advantageous in miniaturizing antenna. The effects of the various parameters on the antenna performance are examined, and we introduced the design procedure for the proposed antenna to operate in the frequency range of 2.3~2.7GHz. Experimental results show that the bandwidth of the proposed antenna is about 480MHz with 2.27~2.75GHz bandwidth. And the antenna gain was 5.8dBi at 2.3GHz and 7.8dBi at 2.6GHz within the bandwidth.

Compact Size Wideband Microstrip Antenna Element for Repeater and Base Stations at 2 GHz

  • Choi, Young-Min;Lee, Bom-son
    • Journal of electromagnetic engineering and science
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    • v.1 no.1
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    • pp.43-47
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    • 2001
  • A compact size microstrip antenna element using FR-4 substrate is proposed for use in repeater and base stations. Two stacked patches are aperture-coupled by two split feedlines. Rectangular stubs on the split feedlines are laid under the aperture and have the effect of considerably lowing the magnitude of $S_{11}$ [dB] and broadening impedance bandwidth. The designed structure has been fabricated and measured. Based on 20 dB, the return loss bandwidth is about 16.8% (1.86 GHz~2.20 GHz), which covers the frequency range assigned for IMT-2000 with a large margin. The overall dimension of the proposed antenna structure is 37 mm$\times$41 mm$\times$19mm (very compact). The antenna gain is more than 7.5 dBi over the required frequency range.

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Design and Fabrication of the Broadband Microstrip Array Antenna with a Conical Radiation Pattern and the Circular Plarization (원추형 복사패턴과 원편파 특성을 가지는 광대역 마이크로스트립 배열 안테나의 설계와 제작)

  • 이면주;이광욱;이수용;정문희;남상욱
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.18 no.11
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    • pp.1774-1784
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    • 1993
  • This paper presents the design, fabrication and measured results of the broadband microstrip array with a conical radiation pattern and the circular array composed of six square microstrip antenna elements. Each element antenna has the stacked structure with a parasitic element to achieve a broadband characteristic and a branch line quadrature hybrid is attached to it for the circular polarization. The design procedures and measured results of the scheme for obtaining the conical radiation pattern which is useful for the mobile communication via the satellite. Finally, the performance of the fabricated antenna is measured and compared with the theory.

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