• Title/Summary/Keyword: 평면 안테나

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A Study on Near-Field to Far-Field Transformation Using Stratton-Chu Formula (Stratton-Chu 공식을 이용한 측정된 근거리장에서 원거리장으로의 변환에 관한 연구)

  • Lee, Jeong-Seok;Song, Tae-Lim;Du, Jin-Kyoung;Koo, Tae-Wan;Yook, Jong-Gwan
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.24 no.3
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    • pp.316-323
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    • 2013
  • This paper deals with the near-field to far-field calculation for far-field characteristics of antenna and electromagnetic compatibility(EMC) testing. Since the conventional EMC testing process is inefficient such as measurements of the wide band signals and mega structures, Stratton-Chu formula is used to predict the far-field emission by simple and direct process. The usefulness of Stratton-Chu formula is verified by comparing to the analytic solution of the uniform distribution aperture in free-space. In order to inspect the far-fields and to get the near-field values, full-wave simulation solver is utilized. Through the full-wave simulation about the patch antenna, calculated far-field results from Stratton-Chu formula are proven. The predicted magnitudes of the far-field are in error by less than 6 %.

Design of a Broadband Quasi-Yagi Antenna fed by a Microstrip with a Shorted End (단락종단된 마이크로스트립으로 급전되는 광대역 quasi-Yagi 안테나 설계)

  • Lee, Jong-Ig;Yeo, Jun-Ho
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2012.05a
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    • pp.70-73
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    • 2012
  • In this paper, we introduce a design method for a quasi-Yagi antenna (QYA) with broadband characteristics of an impedance bandwidth ratio of > 2 : 1 and a gain of > 4 dBi. The QYA is fed by a microstrip line fabricated on a coplanar strip line and it consists of 3 elements; a planar dipole, a nearby director close to the dipole, and a ground plane reflector. By placing a rectangular patch-type director with large width near to the dipole driver, broadband characteristics are achieved. An optimized 3-element QYA for operation over 1.6-3.5 GHz (bandwidth ratio 2.2 : 1) is fabricated on an FR4 substrate with a size of $90mm{\times}90mm$ and tested experimentally. The results show an impedance bandwidth of 1.56-3.74 GHz (bandwidth ratio 2.4 : 1) for VSWR < 2, a peak gain of 4.41-6.53 dBi, and a front-to-back ratio (FBR) > 13.6 dB within the bandwidth.

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Interference Analysis of Wireless Systems with Arbitrary Antenna Patterns and Geographic Information in the VHF/UHF Bands (VHF/UHF 대역에서 지리정보와 임의 안테나 패턴을 갖는 무선시스템의 간섭분석 연구)

  • Suh, Kyoung-Whoan
    • Journal of Broadcast Engineering
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    • v.18 no.3
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    • pp.445-454
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    • 2013
  • By using the radio propagation prediction of Rec. ITU-R P.1546, geographic information system, and S-I plane, we presented the methodology of interference analysis based on the minimum coupling loss, and also suggested the local coordinate system for calculating azimuth and elevation angles between the victim receiver and the interferer for an arbitrary antenna pattern. To check the presented algorithm, the map with the land-sea mixed area was taken for the given area of $80{\times}60[km^2]$ as real geography information. Field strength, path profile, and protection ratio with maximum allowable interference level have been illustrated for radar and fixed wireless system for the assumed frequency. In addition interference power of the victim receiver was calculated asa function of azimuth and elevation angles of the interferer. The developed methodology of interference analysis in the VHF and UHF bands can be actually applied to assess interoperability as well as compatibility in the civil or military applications.

Design of a Broadband Quasi-Yagi Antenna with a 2:1 Impedance Bandwidth Ratio (2:1 임피던스 대역폭 비를 가지는 광대역 quasi-Yagi 안테나 설계)

  • Lee, Jong-Ig;Yeo, Jun-Ho;Park, Jin-Taek
    • Journal of Advanced Navigation Technology
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    • v.16 no.5
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    • pp.760-765
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    • 2012
  • In this paper, we studied a design method for a quasi-Yagi antenna (QYA) with broadband characteristics of an impedance bandwidth ratio greater than 2 : 1 and a gain > 4 dBi. The QYA is fed by a microstrip line fabricated on a coplanar strip line and it consists of 3 elements; a planar dipole, a nearby director close to the dipole, and a ground plane reflector. By placing a wide rectangular patch-type director near to the dipole driver, broadband characteristics are achieved. An optimized 3-element QYA for operation over 1.6-3.5 GHz (bandwidth ratio 2.2 : 1) is fabricated on an FR4 substrate with a size of 90 mm by 90 mm and tested experimentally. The results show an impedance bandwidth of 1.56-3.74 GHz (bandwidth ratio 2.4 : 1) for VSWR < 2, a peak gain of 4.2-6.3 dBi, and a front-to-back ratio (FBR) > 13.6 dB within the bandwidth.

이중 주파수를 이용한 유도 결합형 플라즈마의 특성 분석

  • Seo, Jin-Seok;Kim, Tae-Hyeong;Mishra, Anurag;Kim, Gyeong-Nam;Yeom, Geun-Yeong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.02a
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    • pp.577-577
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    • 2013
  • 플라즈마를 이용하는 공정은 반도체 산업에서 박막트랜지스터, 평면 모니터와 LCD 등 다양한 반도체 및 디스플레이 소자를 제작하는데 중요한 기술 중 하나로 발전되어 왔다. 현재 플라즈마 공정 기술을 이용하여 소자의 크기를 수십 나노 이하로 공정함으로써 수율을 향상시킬 수 있었지만, 소자의 미세화는 그 한계점에 봉착하였다. 그러한 이유로 웨이퍼 사이즈의 크기를 대구경화 시킴으로써 이런 문제점을 극복하고자 하였지만, 대구경 웨이퍼 사이즈에 맞는 차세대 대면적 공정 장비와 그에 따른 플라즈마 소스의 개발과 이를 컨트롤 할 수 있는 능력이 매우 절실하게 되었다. 본 연구에서는 대구경 웨이퍼용 플라즈마 소스를 위해 상대적으로 낮은 압력과 고밀도 플라즈마를 발생시킬 수 있는 유도 결합형 플라즈마원을 사용하였다. 하지만 유도 결합형 플라즈마 소스의 경우 대구경화에 따른 안테나의 길이가 길어짐으로써 생기는 정상파 효과를 피할 수가 없게 되었다. 그러한 이유로, 본 연구에서는 정상파 효과를 줄일 수 있는 상대적으로 낮은 주파수를 사용하는 안테나의 형태를 이용하여 실질적인 공정 영역에 있어서의 균일도 문제를 해결하였다. 또한, 플라즈마의 특성조절을 위해 이중주파수를 사용함 으로써 플라즈마 특성 조절을 하였다. 이러한 형태의 이중주파수를 사용하는 플라즈마 소스를 이용하여 10 mTorr의 Ar/CF4 조건에서 양이온 종들을 PSM (Plasma Sampling Mass spectroscopy, HIDEN Inc.)을 통해 에너지를 분석하였다. 이중 주파수에 있어 전력비율에 따라 IEDs (Ion Energy Distributions)는 많은 변화가 관찰되었으며, 인가하는 입력전력에 따라 E-H mode 전이가 일어남을 관찰할 수 있었다.

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3-Dimensinal Microstrip Patch Antenna for Miniaturization (소형화를 위한 3차원 구조마이크로스트립 패치 안테나)

  • 송무하;우종명
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.14 no.2
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    • pp.157-167
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    • 2003
  • In this paper, to reduce the resonant length of patch, microstrip patch antenna of linear polarization which is suppressed at two radiation edges is designed and fabricated at the frequency of 1.575 GHz. The result is like that the resonant length of patch is 45 mm and the length reduction effect is 43.8 % when it is compared with that(80 mm) of plane type. The gain is 4.4 dBd and -3 dB beamwidths are 112$^{\circ}$ and 66$^{\circ}$ in the E-plane and H-plane, respectively. Also, to reduce the size of patch, microstrip patch antennas those are suppressed at four radiating comers are designed and fabricated at the same frequency in the linear and circular polarization, respectively. For linear polarization, at the 1.2 of width/length(W/L) ratio, the patch area is 53 mm $\times$ 63.6 mm and the size reduction effect is 56.1 % when compared with that(80 mm $\times$ 96 mm) of plane type. The gain is 4.3 dBd and the -3 dB beamwidths are 120$^{\circ}$ and 78$^{\circ}$ in the E-plane and H-plane, respectively. For circular polarization, the patch size(54.2 mm $\times$ 61.5 mm) is reduced by 47.2 % than that(76 mm $\times$ 83 mm) of plane type. -3 dB beamwidth of horizontal polarization in the z-x plane and vortical polarization in the y-z plane are 108$^{\circ}$ and 93$^{\circ}$, respectively and this means the increasement in both planes by 52$^{\circ}$ and 27$^{\circ}$ than those of plane type. The maximum gain is 2.5 dBd in the horizontal polarization in the z-x plane. Axial ratio is 1.5 dB at 1.575 GHz and the 2 dB axial ratio bandwidth(ARBW) is 20 MHz(1.3 %).

A Study on the Planar Sleeve Monopole Antenna for Digital TV Reception (디지털 TV 수신을 위한 평면 슬리브 모노폴 안테나에 관한 연구)

  • Lee, Yun Min;Lee, Sin Hee;Kang, Sang Won
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.10 no.2
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    • pp.21-27
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    • 2014
  • In this paper, a planar sleeve monopole antenna for indoor digital TV reception is presented. The antenna has broadband property with the planar monopole and ground of sleeve. Sleeve monopole and ground conductors of the antenna are on the same plane, and exited through CPW feeding. Sleeve monopole and ground of proposed antenna exist on coplanar plane, and excite as CPW. It used FR4 epoxy dielectric substrate of ${\varepsilon}r=4.4$, and the size is $20[mm]{\times}170[mm]{\times}1.6[mm]$ dimension. So the internal antenna is suitable. The measurement results of the fabricated antenna, return loss is larger than -10 [dB] in 470~806 [MHz]. Maximum gain is 0.59 [dBi] on E-plane at 810 MHz and 1.70 [dBi] on H-plane at 640 [MHz]. Radiation pattern is about the same that of dipole antenna at all frequency.

Near-field Analysis of Dual Parabolic Cylindrical Reflector System for Compact Antenna Test Range (콤팩트 안테나 테스트 레인지용 파라볼릭 원통형 복반사경 시스템의 근접전계 해석)

  • Park, Jae-Hyun;Choi, Hak-Keun;Jeong, Ji-Hoon
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.10 no.5
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    • pp.237-244
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    • 2010
  • In this paper, the dual parabolic cylindrical reflector systems are analyzed as the reflector system for the CATR(Compact Antenna Test Range) facility. The near-field at the test zone of the CATR is calculated by using the PO(Physical Optics) approximation. The CATR has to provide an uniform plane wave with the minimum amplitude and phase ripple and the low cross polarization. Therefore, in this paper, the near-field pattern are calculated, and the ripple and taper of the field and the cross polarization are investigated with the position of the subreflector and the test region. It is confirmed that the analysis results can be used for the design of the CATR with the dual parabolic cylindrical reflector.

A Study on Notched Wi-Fi Bandwidth of Planar Monopole Antenna with Edge (에지를 가진 평면 모노폴 안테나의 무선랜 대역 저지에 관한 연구)

  • Lee, Yun Min;Lee, Jae Choon
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.9 no.4
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    • pp.43-49
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    • 2013
  • In this paper, it is designed inverted triangle structural planar monopole antenna with edge and rectangle slot for UWB(Ultra Wide Band) communication (3.1~10.6 GHz) and researched in about 5.8 GHz notch structure to prevent interference between UWB systems and existing wireless systems for using Wi-Fi service. The antenna have broadband property structurally through inverted triangle structural planar monopole which have edge. and rectangle form addition planned notch slot of 1 mm and height 0.1 mm. Monopole and ground of proposed antenna exist on coplanar plane, and excite as CPW. It used FR4 epoxy dielectric substrate of ${\varepsilon}r$=4.4, and the size is $20{\times}20{\times}1.6$ mm dimension. The measured results that are obtained return loss under -10 dB through 3.1~10.6 GHz(7.5 GHz) without Wi-Fi bandwidth and maximum gain of 8.44 dBi at E-plane. Radiation pattern is about the same that of dipole antenna at all frequency. And using notch slot and it will be able to confirm the quality which becomes notch from 5.8 GHz which are a radio LAN frequency range.

H-Plane 8-Way Rectangular Waveguide Power Divider Using Y-Junction (Y-Junction을 이용한 H-평면 8-Way 구형 도파관 전력 분배기)

  • Lee, Sang-Heun;Yoon, Ji-Hwan;Yoon, Young-Joong;Kim, Jun-Yeon;Lee, Woo-Sang;Park, Seul-Gi
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.23 no.2
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    • pp.151-158
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    • 2012
  • This paper proposes a H-plane 8-way rectangular waveguide power divider using Y-junction. A general N-way power divider can be composed of multi-stage T-junctions. However, if the distances of output ports are close, the matching characteristic is not improved by using only T-junctions because of space limitation. In this case, since other types of 3-port junctions should be used to final output stage, Y-junctions are used with T-junctions in this paper. The proposed Y-junction uses the tapered-line impedance transformer and inductive irises to improve impedance matching characteristic. The 8-way power divider using Y-junction is fabricated and measured. The measured return loss and insertion loss from input port to output port are -30.8 dB and -9.3 dB at operating frequency, respectively. The measured maximum phase difference is about $1^{\circ}$. Therefore, the proposed power divider will be useful to apply to various microwave systems, which need to divide the input power equally, such as feed networks for array antennas.