• 제목/요약/키워드: microstrip antenna.

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L자형 개구면을 갖는 광대역 마이크로스트림 패치 안테나 (The sideband Microstrip Patch Antenna with L-shaped Aperture)

  • 신호섭;김남;장용웅;이승엽
    • 한국전자파학회:학술대회논문집
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    • 한국전자파학회 2000년도 종합학술발표회 논문집 Vol.10 No.1
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    • pp.350-353
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    • 2000
  • In this paper, we designed the microstrip patch antenna with L-shaped aperture, which greatly enhances its bandwidth. We optimized to get a maximum bandwidth. The microstrip patch antenna with L-shaped aperture has the widest bandwidth of the conventional aperture coupled microstrip patch antenna. This antenna also has the low-cross polarization level. The effects of changing several key design parameters of the antenna are investigated. We calculated the VSWR, input impedance, and radiation pattern.

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H-면 결합을 이용한 빔 틸팅 마이크로스트립 패치 배열 안테나 설계 (Design of beam tilting microstrip patch array antenna using H-plane coupling)

  • 하재권;최성수;박동철
    • 한국전자파학회:학술대회논문집
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    • 한국전자파학회 2002년도 종합학술발표회 논문집 Vol.12 No.1
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    • pp.293-296
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    • 2002
  • In this paper, we proposed a beam tilting microstrip patch array antenna for the reception of satellite signals by using low cost copper etched polyester films and foams. The configuration and coupling mechanism of the proposed antenna are similar to the dipole Yagi-Uda antenna. It is composed of 3 layers of polyester films and three layers of foam. In order to prevent unwanted radiation and coupling loss by microstrip feeding networks and parasitic patches, a stacked layer with rectangular slots above the driver patch array is inserted. The 16${\times}$8 element microstrip Patch way antenna is Presented by experimental results. Its beam patterns are affected by many parameters such as sizes of the patches, gap between the patches. characteristics of the substrates, feeding method, etc. Owing to its complexities of various design parameters, both simulation and experiment were performed. The fabricated antenna received DBS signal from KOREASAT 3 by doing nothing but adjusting azimuth direction.

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KOREASAT 위성방송 수신용 마이크로스트립 어레이 안테나에 관한 연구 (A study on the microstrip array antenna for KOREASAT DBS reception)

  • 전주성;이성열;이윤현
    • 한국통신학회논문지
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    • 제21권9호
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    • pp.2514-2525
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    • 1996
  • This paper presents the possibility of the satellite broadcasting reception as a means of microstrip antenna of the planar structure. The paper discusses the design of the optimal KOREASAT DBS(Direct Broadcasting Satellite) reception microstrip antenna. Experimental results for ta 16*16 array antenna of size 35*35cm are also described. Itsgain is over 28dB in the frequency range of 11.7~12.0GHz DBS band. The measured NHK broadcasting C/N ratio of 16816 array antenna is over 10dB in Pusan. It is expected that good picture quality of C/N .GEQ. 12dB can be obtained for domestic use if this microstrip antenna is used in KOREASAT broadcasting receiving system.

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5GHz 대역 마이크로 스트립 안테나 (The microstrip antenna for 5GHz)

  • 박용욱
    • 한국산학기술학회논문지
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    • 제12권12호
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    • pp.5827-5831
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    • 2011
  • 본 논문에서는 5GHz 대역의 무선랜용으로, 대역폭 확대와 고이득에 중점을 둔 마이크로스트립 패치 안테나를 패치의 크기(W, L), 슬롯의 길이(C), 슬롯의 폭(D) 등의 설계 파라미터에 대한 영향을 HFSS (High Frequency Structural Simulator)을 이용하여 분석 한 후, FR-4기판을 사용하여 안테나를 제작하고 특성을 분석하였다. 제작된 안테나 특성 측정 결과, 안테나의 중심 주파수는 5.2GHz, 반사손실은 -41.17dB, 대역폭은 258MHz의 특성을 보였고, 또한 VSWR은 1.1의 값을 얻을 수 있었다

GPS용 마이크로스트립 패치 안테나 설계 및 제작 (Design and Fabrication of Microstrip Patch Antenna for GPS)

  • 이은진;강부식;홍성욱;김홍수
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2002년도 하계종합학술대회 논문집(1)
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    • pp.183-186
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    • 2002
  • In this paper, a microstrip Patch antenna with the T-shaped slits, which are employed to reduce the patch size. is proposed for GPS In order to analyze characteristics of the antennas are defined green function of the moment method. The microstrip Patch antenna and microstrip Patch with the T-shaped slits are fabricated. The numerical result of return loss and -10d13 bandwidth are compared with measured results.

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단일 급전 원형 편파 마이크로스트립 안테나 설계 (Design of Singly Fed Microstrip Antennas Having Circular Polarization)

  • 오세창;전중창;박위상
    • 한국전자파학회논문지
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    • 제10권7호
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    • pp.998-1009
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    • 1999
  • 본 논문에서는 X 밴드 주파수에서 단얼 마이크로스트립 선로 급전방식을 갖는 원형 편파 개구면-패치 안테나(aperture-patch antenna) 및 환 구조 안테나(ring antenna)를 설계, 제작하여 특성을 측정하였다. 개구면-패치 안테나는 동작 대역폭이 매우 넓으며, 환 구조 안테나는 크기가 작아서 대형 배열안테나의 기본 복사소자로 적합하다. 이 두 종류의 안테나에 대하여 VSWR 대역폭과 원형편파 축비(axial ratio)를 개선하기 위한 여러 가지 설계 파라미터의 영향을 분석하였다. 개구면과 환 복사소자는 공진기 모델(cavity mode!)에 근거하여 초기 설계를 하였으며. 원형편파를 발생시키기 위한 개구면 내부의 패치와 환 내부의 스터브(stub) 는 Ensemble 소프트웨어를 사용하여 최적화 하였다. 제작된 안테나는 개구면-패치 안테나의 경우 25 %의 V VSWR 대역폭(3dB 기준)과 1.2 dB의 최소 축비를 가지며, 환 구조 안테나에서는 6.7 %의 VSWR 대역폭과 1.6 dB의 최소 축비를 가진다.

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광대역 특성을 가지는 적층 구조의 Bow-Tie 안테나 설계 (A Design of stacked bow-tie antenna for broadband characteristics)

  • 김진;최성열;박경수;이희복;고영호
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2000년도 추계종합학술대회 논문집(1)
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    • pp.497-500
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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 microstrip patch antenna, broadband microstrip patch 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㎓ 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㏈ at 5.78㎓ 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㏈ at 5.78㎓ and bandwidth is 13% for VSWR 2:1 and 5.6% for VSWR 1.5:1. It has 59.37$^{\circ}$-3㏈ beam width and 6.5㏈ gain.

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모노펄스 레이다용 Cavity-Backed 마이크로스트립 안테나 개발 (Cavity-Backed Microstrip Antenna for a Monopulse Radar)

  • 박종국;나형기;구연덕;이종민
    • 한국전자파학회논문지
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    • 제14권2호
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    • pp.96-103
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    • 2003
  • 본 논문에서는 모노펄스 레이다용 cavity-backed 마이크로스트립 안테나를 설계 및 제작하고, 제작된 안테나의 측정 결과를 분석하여 레이다 시스템에 잘 적용될 수 있음을 보였다. 일반적인 마이크로스트립 안테나의 방위각 빔폭에 비해, 시스템에서 요구하는 방위각 빔폭이 상당히 넓기 때문에, 마이크로스트립 패치의 폭을 상당히 줄였으며, 이에 따른 대역폭의 감소는 유효 기판 두께를 증가시킴으로 보상하였다. 또한 각도에 따른 안테나 이득 변화에 대한 탐지 거리와 탐지 확률을 계산함으로써, 제작된 안테나가 이러한 레이다 시스템에 잘 적용될 수 있음을 보였다.

Design and Analysis of Microstrip Line Feed Toppled T Shaped Microstrip Patch Antenna using Radial Basis Function Neural Network

  • Aneesh, Mohammad;Kumar, Anil;Singh, Ashish;Kamakshi, Kamakshi;Ansari, J.A.
    • Journal of Electrical Engineering and Technology
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    • 제10권2호
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    • pp.634-640
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    • 2015
  • This paper deals with the design of a microstrip line feed toppled T shaped microstrip patch antenna that gives dualband characteristics at 4 GHz and 6.73 GHz respectively. The simulation of proposed antenna geometry has been performed using method of moment based IE3D simulation software. A radial basis function neural network (RBFNN) is used for the estimation of bandwidth for dualband at 4 GHz and 6.73 GHz respectively. In RBFNN model, antenna parameters such as dielectric constant, height of substrate, and width are used as input and bandwidth of first and second band is considered as output of the network. To validate the RBFNN output, an antenna has been physically fabricated on glass epoxy substrate. The fabricated antenna can be utilized in S and C bands applications. RBFNN results are found in close agreement with simulated and experimental results.

Corporate-Series Fed Microstrip Array Antenna with Yagi Elements for 5G

  • Kim, Geun-Sik;Choi, Dong-You
    • Journal of information and communication convergence engineering
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    • 제18권3호
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    • pp.162-166
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    • 2020
  • The present paper presents an array antenna of a microstrip patch for 5G applications. Four rectangular microstrip patch elements are arranged in parallel and series to form an array antenna. Two insets are made on both sides of each patch element to achieve a wide frequency bandwidth of 23.97-31.60 GHz. To attain a high gain and wider bandwidth, the microstrip patch antenna is fed using series and corporate feeding networks. Further, three director elements on top of the top-most patch elements, and one reflector element at the open end of each patch element, are added. The addition of the Yagi elements improved the overall gain and acquired a higher radiation efficiency throughout the operating frequency bandwidth, with the array antenna achieving a maximum peak gain of 8.7 dB. The proposed antenna is built on a low-loss and low-cost substrate of FR4-eproxy. The proposed antenna design with a simple structure is suitable for Internet of Things and 5G applications.