• Title/Summary/Keyword: Electromagnetic band gap (EBG)

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EBG(Electromagnetic Band Gap) Pattern Reserch for Power noise on Packing Board (패키징 보드에서의 전원노이즈 저감을 위한 EBG(Electromagnetic Band Gap) 패턴에 관한 연구)

  • Kim, Byung-Ki;Yoo, Jong-Woon;Kim, Jong-Min;Ha, Jung-Rae;Nah, Wan-Soo
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.1601_1602
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    • 2009
  • 본 논문은 SSN(Simultaneous Switching Noise) 이 유전체를 통해 다른 시스템에 유기되는 것을 막기 위한 방법인 EBG(Electromagnetic Band-Gap)에 관한 연구이다. 이에 대한 EBG 구조를 설계하기 위해 PDN(Power Delivery Network)에 주기적인 패턴을 삽입한다. 패키지에 EBG 구조를 적용하기 위해 인쇄 회로기판 범위에서 연구되었던 구조를 변형 및 개조하여 EBG 구조가 내포하고 있는 필터의 차단 주파수의 범위를 넓히며 차단 시작 주파수를 1GHz 아래로 낮추는 소형화 방법을 모색한다. 이 연구에서 실시할 EBG 구조에 대한 간단한 고찰과 인쇄 회로 기판에 적합한 AI-EBG(Alternating impedance Electromagnetic Band-Gap) 구조를 이용한 EBG 의 소형화에 대해 언급하고, 소형화를 위한 3-D EBG 의 설계구조에 대해 설명한다. 그리고 저주파에서 차단특성을 높이기 위한 방법으로 3-D EBG를 사용하고 AI-EBG와 비교하여 차단특성의 변화를 Full-wave 시뮬레이션과 측정으로서 비교한다.

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Design of Improved U-Slotted Patch Antennas with EBG Ground Plane (EBG(Electromagnetic Band-Gap) 접지면을 갖는 개선된 U-Slotted 패치 안테나의 설계)

  • Park, Jong-Hwan;Lim, Seong-Bin;Choi, Hak-Keun
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.19 no.3
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    • pp.304-310
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    • 2008
  • Generally U-slotted patch antenna with PEC(Perfect Electric Conductor) ground plane is used for mobile telecommunication. However the improvement of the bandwidth is required to enlarge the capability of mobile telecommunication, In this paper, U-slotted patch antenna with EBG(Electromagnetic Band-Gap) ground plane is proposed to enlarge thr bandwidth and its radiation characteristics are investigated. To conform the bandwidth improvement, two kinds of U-slotted patch antennas with EBG and PEC ground plane are designed, fabricated, and radiation characteristics are measured. It is shown that the proposed antenna is wider than U-slotted patch antenna with PEC ground plane in bandwidth.

Study on Performance Enhancement of Microstrip Antenna Using EBG Structure (EBG 구조를 이용한 마이크로스트립 안테나의 성능 향상에 관한 연구)

  • Yoon, Sung-Hyun
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.39B no.1
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    • pp.44-52
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    • 2014
  • In this study, the influence of the near field, far field and radiation directivity of microstrip patch antenna when is used mushroom EBG(Electromagnetic Band Gap) as ground is investigated. Using characteristic of dispersion diagram of mushroom EBG, we calculated forbidden band(2.36GHz-2.85GHz) given mushroom type EBG microstrip antenna(2.45GHz) having 2-layer EBG that is operating within forbidden band. In oder to conform performance enhancemen of antenna using EBG ground, we have compared with the antenna using PEC(Perfect Electric Conductor) ground. We could know about 2.74dB increment of the radiation directivity, because EBG can suppress surface wave that is generated at interfaces of the dielectrics-conductor.

Circularly Polarized Electromagnetic Band Gap Patch-Slot Antenna with Circular Offset Slot

  • Hajlaoui, El Amjed
    • Journal of information and communication convergence engineering
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    • v.16 no.3
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    • pp.197-202
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    • 2018
  • This paper reveals the impact of the insertion of electromagnetic band gap (EBG) structures on the performance of circularly polarized (CP) patch-slot antenna with offset slot. Several optimizations are necessary to precise physical parameters in the aim to fix the resonance frequency at 3.2 GHz. The proposed antenna possesses lightweight, simplicity, low cost, and circular polarization ensured by two feeding sources to permit right-hand and left-hand circular polarization process (RHCP and LHCP). The measured results compared with simulation results of the proposed circularly polarized EBG antenna with offset slot show good band operations with –10 dB impedance bandwidths of 9.1% and 36.2% centered at 3.2 GHz, which cover weather radar, surface ship radar, and some communications satellites bands. Our investigation will confirm the simulation and experimental results of the EBG antenna involving new EBG structures.

Reduction of Radio-Frequency Interference in Metal-Framed Smartphone Using EBG Structures (EBG 구조를 이용한 메탈 프레임 스마트폰 내의 전자파 간섭 저감)

  • Park, Hyun Ho
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.27 no.10
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    • pp.945-948
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    • 2016
  • Recent premium smartphones commonly employ a metal frame and this trend is currently spreading over mid-range smartphones. However, the metal frame becomes a good coupling path of electromagnetic noises emitted from digital components in smartphones and then increases radio-frequency interference(RFI) to RF antennas located at top and bottom sides of smartphones. This paper proposed a metal frame with EBG(Electromagnetic Band Gap) structure to reduce the noise coupling to antenna by suppressing surface wave on the metal frame. By simulation, it is confirmed that the proposed metal frame with $7{\times}6$ mushroom-type EBG array pattern with multi-via can reduce the noise coupling to RF antenna by about 20 dB.

Phone Case using the EBG Structure for Reducing SAR (EBG 구조를 사용한 전자파 인체 흡수 차단 휴대폰 케이스)

  • Oh, Doyoung;Yoo, Hyoungsuk
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.64 no.1
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    • pp.78-81
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    • 2015
  • This paper investigates the performance of phone case with different permittivities like plastic, urethane and silicone. Then, we put an electromagnetic band gap (EBG) structure in phone case to reduce the specific absorption rate (SAR). In order to design the phone case, a loop antenna for PCS 1900 band was used. The phone case consists of a hairpin-like EBG structure that is more compact than other EBG structures. The SEMCAD X fdtd simulation results showed that, this proposed phone case can reduce SAR by 13 - 30% at similar power that is radiated by the antenna. This phone case can be used in future to reduce the SAR from mobile phones.

Design and implementation of electromagnetic band-gap embedded antenna for vehicle-to-everything communications in vehicular systems

  • Kim, Hongchan;Yeon, KyuBong;Kim, Wonjong;Park, Chul Soon
    • ETRI Journal
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    • v.41 no.6
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    • pp.731-738
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    • 2019
  • We proposed a novel electromagnetic band-gap (EBG) cell-embedded antenna structure for reducing the interference that radiates at the antenna edge in wireless access in vehicular environment (WAVE) communication systems for vehicle-to-everything communications. To suppress the radiation of surface waves from the ground plane and vehicle, EBG cells were inserted between micropatch arrays. A simulation was also performed to determine the optimum EBG cell structure located above the ground plane in a conformal linear microstrip patch array antenna. The characteristics such as return loss, peak gain, and radiation patterns obtained using the fabricated EBG cell-embedded antenna were superior to those obtained without the EBG cells. A return loss of 35.14 dB, peak gain of 10.15 dBi at 80°, and improvement of 2.037 dB max at the field of view in the radiation beam patterns were obtained using the proposed WAVE antenna.

EBG Resonator Antenna with a Stripline Type FSS Superstrate for PCS-band Base Station Antennas (스트립라인 형태의 주파수 선택적 표면 덮개층을 이용한 PCS대역 기지국용 EBG 공진기 안테나)

  • Yeo, Jun-Ho;Kim, Dong-Ho
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.45 no.8
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    • pp.15-27
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    • 2008
  • In this paper, an EBG(Electromagnetic BandGap) resonator antenna with a stripline type FSS(Frequency Selective Surface) superstrate for PCS-band base station antennas is proposed. The characteristics of resonant frequency and -3dB bandwidth of a unit cell of a superstrate are first analyzed by varing several design parameters such as a strip width and a unit cell width in order to design an EBG resonator antenna satisfying the required antenna gain and bandwidth for PCS-band base station antennas. Among various unit cell shapes, strip dipole and stripline are considered and their characteristics are compared. It was found that a resonant length of the EBG resonator antenna becomes smaller when the stripline shape is used and the control of the bandwidth is also much easier. By using the unit cell simulation results, planar and cylindrical EBG resonator antennas at PCS-band are designed.

Design of Electromagnetic Band Gap Structure for Global Navigation Satellite Service (Global-Navigation Satellite Service를 위한 Electromagnetic Band Gap 구조체 설계)

  • Chung, Ki-Hyun;Jang, Young-Jin;Yeo, Sung-Dae;Jung, Chang-Won;Kim, Seong-Kweon
    • The Journal of the Korea institute of electronic communication sciences
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    • v.10 no.1
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    • pp.27-32
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    • 2015
  • In this paper, a mushroom typed electromagnetic band gap (EBG) structure to be inserted in the printed circuit board (PCB) inner layer in order to stabilize the PCB power line is proposed for global-navigation satellite service (GNSS). In designing the proposed EBG structure, the target stop-bandwidth was designed from 1.55GHz to 1.81GHz including GNSS and mobile communication-related frequency bandwidth. In this bandwidth, the insertion loss(S21) was observed below about -40dB. From the simulation results, it is expected that the stabilization of power delivery network (PDN) structure in the PCB circuit design should be improved and the effective correspondence to EMI will be helpful.

Fabrication of the EBG structure for GNSS (Global Navigation Satellite Service 를 위한 EBG 구조체 제작)

  • Jang, Young-Jin;Chung, Ki-Hyun;Cho, Seung-Il;Yeo, Sung-Dae;Kim, Jong-Un;Kim, Seong-Kweon
    • Journal of Satellite, Information and Communications
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    • v.9 no.4
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    • pp.42-46
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    • 2014
  • In this paper, a coil typed electromagnetic band gap (EBG) structure to be inserted in the printed circuit board (PCB) inner layer in order to stabilize the PCB power line is proposed and implemented for global-navigation satellite service (GNSS) with the bandwidth from 1.55GHz to 1.81GHz. From the measurement result of the PCB board including EBG structure, the insertion loss(S21) was measured below about -50dB. From these results, it is expected that the stabilization of power delivery network (PDN) structure in the PCB circuit design should be improved and the preparation to EMI will be effective.