• Title/Summary/Keyword: Antenna impedance

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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%.

A Study on the Characteristic of Variable Impedance Line using DGS (DGS를 이용한 가변 임피던스 선로 특성에 관한 연구)

  • Kim Young-Ju;Joung Myoung-Sub;Park Jun-Seok;Cho Hong-Goo
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.54 no.1
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    • pp.35-40
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    • 2005
  • In this paper, we designed and fabricated the variable impedance line by using the DGS(Defected Ground Structure) which is useful in mounting the external lumped elements. Also we used a varactor diode as Control device stuff at the proposed variable impedance line. We are able to change the impedance of transmission line as varied the capacitance of varactor diode by adjusting DC bias. The impedance variation of the proposed DGS line is about maximum 70 Ω. We will study about the application of DAM(Direct antenna modulation) in the future work.

Design and Fabrication of 5.8GHz Band Microstrip Array Antenna (5.8GHz 대역 마이크로스트립 배열 안테나 설계 및 제작)

  • Kim, P.S.;Lee, J.H.;An, J.S.;Kim, T.H.;Ha, D.H.
    • Proceedings of the Korea Electromagnetic Engineering Society Conference
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    • 2003.11a
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    • pp.478-483
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    • 2003
  • In this paper, in order to fabricate the circularly polarized diversity system which will mitigate multipath fading, 5.8GHz band microstrip array antenna were designed and fabricated. These antenna were designed using Ensemble 6.0 program and the fabricated antenna were vertical and horizontal polarized antenna, left-handed circularly polarized antenna, and right-handed circularly polarized antenna. The designed antenna parameters included S11 and impedance characteristics of fabricated antenna were measured using Network Analyzer(8753ES). From the measurement results, the S11 for each polarization antenna at resonance frequency of 5.8GHz band was showed -38dB, -44dB, and -50dB respectively and it was similar to the simulation result, and also the impedance can be matched at $50{\Omega}$. In order to compare polarization characteristics, broadband measurement was also conducted in this paper.

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Bandwidth Enhancement of an Aperture Coupled Microstrip Patch Antenna Using a Shunt Stub (병렬 스터브를 이용한 개구면 결합 마이크로스트립 패치 안테나의 대역폭 확장)

  • Koo, Hwan-Mo;Yoon, Young-Min;Kim, Boo-Gyoun
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.49 no.2
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    • pp.39-49
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    • 2012
  • An impedance bandwidth enhancement method of an aperture coupled microstrip patch antenna (ACMPA) using a shunt stub is investigated. The conventional ACMPA with a H-shaped coupling aperture is designed and the electrical parameters for the equivalent circuit of the designed conventional ACMPA are extracted. A method for the enhancement of the impedance bandwidth of the ACMPA using a tuning stub connected in shunt with the feed line is presented. The -10 dB return loss impedance bandwidth of the ACMPA with a shunt stub is increased up to about 14 %. The maximum impedance bandwidth of the corresponding ACMPA without a shunt stub is 5.4 %. The increase of the impedance bandwidth of the ACMPA with a shunt stub compared to that of the corresponding ACMPA without a shunt stub is about 160 %.

On the measurement of characteristics of antennas for indoor digital TV (실내 디지털 TV용 안테나 특성 측정에 관하여)

  • Park, Jin-Taek;Lee, Jong-Ig;Yeo, Junho
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.18 no.10
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    • pp.2345-2350
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    • 2014
  • In this paper, measurement methods for the characteristics of antennas for indoor digital TV (DTV), having 75-ohm port impedance, are introduced. Reference impedance of typical radio frequency (or microwave) systems and measurement equipments is 50 ohm. However, the reference impedance of antennas for indoor DTV is 75 ohm, and the characteristics of the antennas cannot be measured directly using the measurement equipments. Measurement methods, using test equipments with reference impedance of 50 ohm, for the characteristics(impedance, radiation patterns, and gain) of antennas designed to fit for 75 ohm port are introduced.

On the measurement of characteristics of planar antennas for indoor digital TV (실내 디지털 TV용 평면 안테나 특성 측정에 관하여)

  • Lee, Jong-Ig;Yeo, Junho;Kim, Soo-Min;Yang, Myung-Kyu;Eun, Jang-Soo
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2014.05a
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    • pp.45-46
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    • 2014
  • In this paper, measurement methods for the characteristics of antennas for indoor digital TV (DTV), having 75-ohm port impedance, are introduced. Reference impedance of typical radio frequency (or microwave) systems and measurement equipments is 50 ohm. However, the reference impedance of antennas for indoor DTV is 75 ohm, and the characteristics of the antennas cannot be measured directly using the measurement equipments. Measurement methods, using test equipments with reference impedance of 50 ohm, for the characteristics(impedance, radiation patterns, and gains) of antennas designed to fit for 75 ohm port are introduced.

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Matching Network Design for Improving the Bandwidth of Microstrip Antenna (마이크로스트립 안테나의 대역폭 개선을 위한 정합회로설계)

  • 전성근;이종룡;이우재;이문수
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.9 no.3
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    • pp.305-316
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    • 1998
  • The impedance matching network with the simplfied real frequency technique (SRFT) is proposed as a method for bandwidth enhancement of microstrip antenna. The validity of the technique is based on the relative frequency insensitivity of the radiation pattern and gain characteristics as compared to the resonant behaviour of the input impedance. The most significant feature of this technique is that there is no need to find any analytical description of the antenna and generator, and it only utilizes directly real frequency generator and load data over the prescribed frequency band. Furthermore, it is not necessary to invent an analytic form of the system transfer function to assume a matching network topology in advance. In this paper, the transmission line model is used to investigate the rectangular microstrip antenna, and based on the Fano's bandwidth-enlargement theory, the SRFT is introduced to design the matching networks of microstrip antennas in order to obtain a constant gain over the frequency band of interest. Two representative microstrip antnnas with different structure are fabricated and tested. From these procedures, it is obtained that the proposed impedance matching networks of microstrip antenna improve the impedance bandwidth nearly three times compared to the antenna without them.

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A New Type of Yagi-Uda Antenna for High Terahertz Output Power (고출력 테라헤르츠파 발생을 위한 새로운 구조의 Yagi-Uda 안테나)

  • Han, Kyung-Ho;Park, Yong-Bae;Kim, Sang-In;Park, Ik-Mo;Lim, Han-Jo;Han, Hae-Wook
    • Korean Journal of Optics and Photonics
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    • v.19 no.1
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    • pp.9-14
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    • 2008
  • In this paper, a new type of Yagi-Uda antenna that operates in the terahertz frequencies is designed. The proposed Yagi-Uda antenna can obtain high input resistance of approximately $2000{\Omega}$ at the resonance frequency by using a full-wavelength dipole instead of a half-wavelength dipole as the driver element. The current leakage into the bias line was minimized by applying the photonic bandgap structure to the bias line. By designing the antenna on a thin substrate, the impedance lowering of an antenna caused by the relative dielectric constant of the substrate was prevented and the end-fire radiation pattern which is the original radiation characteristic of the Yagi-Uda antenna could be obtained. We expect that the proposed Yagi-Uda antenna can achieve increased terahertz output power by improving the impedance mismatching problem with the photomixer.

Broadband Microstrip Patch Antenna Design (광대역 마이크로스트립 패치 안테나 설계)

  • 이호준;이재영;김종규
    • Journal of the Microelectronics and Packaging Society
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    • v.11 no.1
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    • pp.7-11
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    • 2004
  • In this paper, the wideband microstrip patch antennas for the Personal communications Service (PCS : 1750∼1870 MHz) and International Mobile Telecommunications-2000 (IMT-2000 : 1920∼2170 MHz) dual band are studied. Experimental and simulation results on the dual band antenna are presented. Simulation results are in good agreement with measurements. The experimental and simulation results confirm the wideband characteristics of the antenna. The studied antenna satisfied the wideband characteristics that are required characteristics for above 420 MHz impedance bandwidth for the PCS and IMT-2000 dual band antenna. In this paper, through the designing of a dual band antenna, we have presented the availability for PCS & IMT-2000 base station antenna. An impedance bandwidth of 33% (VSWR<1.5, 650 GHz) and a maximum gain of 7dB can be achieved. The radiation pattern is stable across the passband.

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Compact Triple-Band Monopole Antenna for WLAN/WiMAX-Band USB Dongle Applications

  • Shi, Ya Wei;Xiong, Ling;Chen, Meng Gang
    • ETRI Journal
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    • v.37 no.1
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    • pp.21-25
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    • 2015
  • A miniaturized triple-band antenna suitable for wireless USB dongle applications is proposed and investigated in this paper. The presented antenna, simply consisting of a circular-arc-shaped stub, an L-shaped stub, a microstrip feed line, and a rectangular ground plane has a compact size of $16mm{\times}38.5mm$ and is capable of generating three separate resonant modes with very good impedance matching. The measurement results show that the antenna has several impedance bandwidths for S11 ${\leq}$ -10 dB of 260 MHz (2.24 GHz to 2.5 GHz), 320 MHz (3.4 GHz to 3.72 GHz), and 990 MHz (5.1 GHz to 6.09 GHz), which can be applied to both 2.4/5.2/5.8 GHz WLAN bands and 3.5/5.5 GHz WiMAX bands. Moreover, nearly-omni-directional radiation patterns and stable gain across the operating bands can be obtained.