• Title/Summary/Keyword: 다이폴 쌍

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Design of Frequency Reconfigurable Antenna with the Vertically Stacked Dipole Structure (수직 적층형 다이폴 구조를 갖는 주파수 재구성 안테나 설계)

  • Jung, Young-Jin;Hong, Ic-Pyo;Eom, Soon-Young
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.22 no.5
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    • pp.552-559
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    • 2011
  • In this paper, the frequency reconfigurable antenna is proposed and designed. The proposed antenna is designed using the vertically stacked dipole structures and have the operating band for Cellular, PCS/WCDMA/Wibro/WiFi and WiMAX. The operating frequency band is selected by three pair of PIN diodes using the voltage difference between each dipole antenna and feeding transmission lines. The proposed antenna meets the required operating bandwidth and the maximum gain for each frequency band are measured as 6.3 dBi, 5.4 dBi and 5.8 dBi, respectively. The proposed antenna in this paper can be applied for the future mobile small base station or repeater antenna because this antenna can provide the small size and high gain features.

A Potential-Based Panel Method for the Analysis of Resistance Characteristics of a High Speed Catamaran (포텐셜기저 패널법에 의한 고속쌍동선의 저항성능 해석)

  • Kim, Y.G.;Rhyu, S.S.;Yoo, J.H.;Lew, J.M.;Hong, S.K.
    • Journal of the Society of Naval Architects of Korea
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    • v.34 no.4
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    • pp.12-20
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    • 1997
  • A potential-based panel method has been developed to investigate the resistance characteristics of a high speed catamaran advancing on the free surface. Normal dipoles and sources are distributed on the body surface while sources are distributed on the free surface. Linearised free surface conditions are used in the present analysis. To avoid the instabilities due to the velocity difference between inner and outer flow of a high speed catamaran, Kutta condition has been applied at the stern. Model test has been carried out not only to validate the numerical results but to confirm the capabilities of a CWC(Circulating Water Channel). It is believed that we can obtain the qualitatively reasonable results in the CWC. Computed results are compared with those of experiments and Insel's experimental values. Since the Kutta condition is applied at the stern, stable solutions are obtained at the high speed range. The present method, using linearised free surface conditions at the high speed range, seems to be a useful tool in the hull form design of a high speed catamaran.

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A Super-Wideband Dipole Antenna With a Self-Complementary Structure (자기상보 구조를 갖는 초광대역 다이폴 안테나)

  • Park, Won Bin;Kwon, Oh Heon;Lee, Sungwoo;Lee, Jong Min;Park, Young Mi;Hwang, Keum Cheol
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.41 no.11
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    • pp.1414-1416
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    • 2016
  • In this paper, a SWB (Super-WideBand) dipole antenna with self-complementary structure is proposed for signal intelligence. The proposed antenna consists of a self-complementary dipole antenna and a tapered balun for balanced feeding. The measured -10 dB reflection bandwidth of the proposed antenna is more than 28:1 (0.73-20 GHz) and 3 dB axial ratio bandwidth is 3.25:1 (1.91-6.22 GHz) with RHCP (Right Hand Circular Polarization) at +z direction. The measured radiation patterns are omni-directional in lower frequency band and bi-directional in higher frequency band. The measured peak gain within -10 dB reflection bandwidth varies from 2.83 dBi to 7.66 dBi.

A Flat-Plate Antenna Employing Semi-Annular Slots for Satellite Broadcast Reception (반원형 고리 슬롯을 이용한 평판형 위성방송 수신 안테나)

  • Park Min-Seok;Lee Hua;Park Dong-Hee;Ahn Bierng-Chearl
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.15 no.12 s.91
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    • pp.1131-1140
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    • 2004
  • In this paper, we proposed a flate-plate antenna employing semi-annular slots for satellite broadcast reception. The radiating element of the antenna is dual annular slots fed by a strip dipole, which have a wider bandwidth than the rectangular slot. A $16{\times}16$ array antenna is designed using stripline T-junction power dividers. Measurements of the fabricated antenna show a gain of 28.0$\~$29.5 dB in 11.7$\~$12.8 GHz frequency range.