• Title/Summary/Keyword: Electromagnetic bandgap(EBG)

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Performance Analysis of the Uni-Directional Radiation Equiangular Antenna over EBG Surface (EBG 표면 위의 단일 방향 복사 등각 안테나의 성능 해석)

  • Yoon, Sung Hyun;Kim, Jae Kwan
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.40 no.8
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    • pp.1622-1630
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    • 2015
  • In this study, we used EBG(electromagnetic band gap) reflector to change bi-directional radiation of circular polarization into uni-directional radiation of equiangular spiral antenna. When the height of spiral arm from EBG reflector is 0.07 wavelength of the lowest operating frequency, the axial ratio of the circular polarization was deteriorated. In this paper, we analyzed the magnitude and the time phase difference of $E_{\theta},E_{\phi}$ that generates right hand circle polarization that is co-polarization at +z direction and proposed the improving condition for axial ratio at all related frequency range. As a result, we obtained that the axial ratio was below 3[dB] at range of 3 ~ 10[dB], the gain was improved about 3[dB] with comparison to bi-directional radiation at free space, and $S_{11}$ was below -10[dB] at all related frequency range.

A Microstrip Bandpass Filters Using Dual-Behavior Resonators Integrated with EBG Structures to Improve Stopband Response (저지대역 개선을 위해 EBG구조를 집적한 DBR 마이크로스트립 대역통과 여파기)

  • Seok Chang-Heon;Jang Jae-Sam;Lim Jung-Sup;Hwang Ho-Soon;Jung Young-Ho;Lee Dong-Cheol;Lee Min-Soo
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.43 no.7 s.349
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    • pp.162-169
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    • 2006
  • A Micorstrip Bandpass Filter Using DBRs for WLAN ($2.3{\sim}2.4GHz$) applications is designed and an EBG structure is employed in the ground plane of the filter to suppress the stopband responses of the filter. The number of DBRs is chosen as two in consideration of low insertion loss and small size of two filter. The center frequency of the filter to be designed is 2.35GHz and its bandwidth is 140MHz. The responses of two kinds of DBR filters (one with EBG and the other without EBG) are calculated and compared with the measurements. The experimental results are in good agreement with the calculations: The bandwidth and insertion loss of the filter with EBG structure are 3.8% and 1.7dB respectively, while those of the filter without EBG structure are 7% and 1.23dB. It is shown that the insertion loss of the filter is increased and its bandwidth is deceased due to the EBG structure. Also the stopband responses of the filters with EBG structures are shown to be much improved compared with those without EBG.