• Title/Summary/Keyword: 2.4GHz

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Design and Implementation of LTE-TDD 2×2 MIMO Bidirectional RF Hybrid Beamforming System (LTE-TDD 2×2 MIMO 양방향 RF 하이브리드 빔포밍 시스템 설계 및 구현)

  • Lee, Kwang-Suk;Kim, Dong-Hyun;Oh, Hyuk-Jun
    • Journal of Korea Society of Industrial Information Systems
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    • v.23 no.4
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    • pp.23-31
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    • 2018
  • This paper presented the implementation and design of the 2T-2R wireless HD video streaming systems over 1.7 GHz frequency band using 3GPP LTE-TDD standard on NI USRP RIO SDR platform. The baseband of the system used USRP RIO that are stored in Xilinx Kintex-7 chip to implement LTE-TDD transceiver modem, the signal that are transmitted from USRP RIO up or down converts to 1.7 GHz by using self-designed 1.7 GHz RF transceiver modules and it is finally communicated HD video data through self-designed 2x9 sub array antennas. It is that communication method between USRP RIO and Host PC use PCI express x4 to minimize delay of data to transmit and receive. The implemented system show high error vector magnitude performance above 32 dBc and to transmit and receive HD video in experiment environment anywhere. The proposed hybrid beam forming system could be used not only in the future 5G mobile communication systems under 6 GHz frequency band but also in the systems over 6 GHz frequency band like ones in mmWave frequency bands.

End-Fire 방사특성을 가지는 2.4GHz ISM 밴드용 Open End 슬롯 안테나의 설계

  • Jo, Yun-Gi;Gwon, Gi-Hwan;Yun, Jeong-Ho;Im, Seong-Gyun;Lee, Yeong-Sun
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2010.04a
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    • pp.154-155
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    • 2010
  • 본 논문에서는 end-fire 방사패턴 특성을 가지는 2.4GHz ISM 밴드용 소형 open-end slot 안테나를 설계하였다. 안테나 설계 공간은 $23mm{\times}15mm$의 좁은 영역으로 한정된 공간 내에 안테나를 설계하기 위하여 한번의 Bent된 slot을 도입하였고, End-Fire 방사특성을 내기위해 안테나 수평면상의 위쪽 방향으로 slot을 open시킨 구조이다. Bent된 slot을 이용해 전체 slot의 길이를 변화시키지 않고 주파수의 조절이 가능하고, Feeding Line의 길이와 폭을 조절하여 보다 광대역의 특성을 얻을 수 있었다. 제작된 안테나의 공진 주파수는 2.46GHz이고 대역폭은 2.4GHz~2.61GHz 까지 약 210MHz(VSWR<2) 이다. 방사패턴은 동작 주파수 내에서 slot이 open된 방향으로 end-fire특성을 가지고, 안테나의 이득과 효율은 각 각 1dBi, 70% 이상의 성능을 가진다. 설계 결과의 검증을 위해 모의실험 결과와 측정 결과를 비교하여 제시하였다.

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The Magnetic Properties of Co-Zn Mixed Y-type Hexagonal Ferrite (Co-Zn 복합 Y-형 육방정 페라이트의 자기적 특성)

  • 이종협;권순주
    • Journal of the Korean Magnetics Society
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    • v.4 no.2
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    • pp.114-121
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    • 1994
  • A $Ba_{2}Co_{2-x}Zn_{x}Fe_{12}O_{22}(x\;=\;0.0~2.0,\;Co_{2-x}Zn_{x}Y)$ powder was prepared by a oxidation--coprecipitation method and sintered at $1150~1250^{\circ}C$ for 4 hours. The microstructures and magnetic properties(saturation magnetization, Curie temperature), complex permeability of sintered body were measured As increasing Zn content from x = 0 to 2.0 in $Co_{2-x}Zn_{x}Y$, the real value of complex permeased from 7 GHz to 1 GHz. Because of resonance in few GHz range, Y-type hexagonal ferrite is rmre applicalble than spinel ferrite in high frequency range, and more research would be necessary to find the mechanism of the second resonance observed in higher frequency.

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Design of a Ka-Band Microstrip Array Antenna for Satellite Communication (위성통신용 Ka-Band 마이크로스트립 배열안테나의 설계)

  • 류정기;임인성;이덕재;민경일;오승엽
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.10 no.1
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    • pp.142-149
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    • 1999
  • In this paper, Aperture-coupled microstrip array antenna was designed and manufactured for satellite communication at Ka-Band. We analyzed a microstrip radiation element and designed power divider using $\lambda$g/4 transformer and T-junction power divider. A manufactured Aperture-coupled $2\times2$ microstrip array antenna has a resonant frequency of 20 GHz. The experimental results are as followings : resonant frequency of 19.62 GHz, VSWR 1.0692, return loss -29.61 dB, Bandwidth 1.76 GHz and -3 dB beamwidth $42^{\circ}$.

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A Study of Patch Antenna for 6GHz (6GHz 대역용 패치 안테나 연구)

  • Yong-Wook, Park
    • The Journal of the Korea institute of electronic communication sciences
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    • v.17 no.6
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    • pp.1063-1068
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    • 2022
  • The modern society has become entry into the information age after the spread of Internet. In the information age, internet was developed from the wired access to the wireless Internet access. When a surge in demand for wireless Internet access, performance and speed of 2.4 and 5GHz band for Wi-Fi which leads to saturation of the communication was significantly fall. Accordingly, the communication of the 6GHz band for Wi-Fi 6E came to be interested. In this paper, we studied the design and fabrication of microstrip patch antenna to be used in wireless communication systems operating at around 6GHz band. To obtain antenna parameters such as patch size, inter patch space, antenna was simulated by HFSS(High Frequency Structure Simulator). From these parameters, slot microstrip patch antenna is fabricated using FR-4 of dielectric constant 4.4. The characteristics of fabricated patch type microstrip antenna were analyzed by network analyzer.

A Design and Implementation of CPW-fed Antenna with Two Branch Strip for WLAN Applications (WLAN 적용을 위한 두 개의 분기 선로를 갖는 CPW 급전 모노폴 안테나의 설계와 제작)

  • Yoon, Joong-Han;Choi, Young-Kyu
    • The Journal of the Korea institute of electronic communication sciences
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    • v.10 no.4
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    • pp.441-448
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    • 2015
  • In this paper, a CPW-fed dual-band monopole antenna with two branch strips for WLAN(Wireless Local Area Networks) applications was designed, fabricated and measured. The proposed antenna is based on a CPW-feeding structure, and composed of two branch strips and then designed and tuned the length of two branch lines to obtained required frequencies bands. To obtain the optimized parameters, we used the simulator, Ansoft's High Frequency Structure Simulator(HFSS) and carried out simulation about parameters $L_5$, $L_8$, $W_3$, $W_5$, $W_9$. The proposed antenna is fabricated on the FR-4 substrate using the obtained parameters. The numerical and experiment results demonstrated that the proposed antenna obtained the -10 dB impedance bandwidth 1,095 MHz (1.57~2.665 GHz) for 2.4 GHz band and 1,680 MHz (4.99~6.67 GHz) for 5 GHz band satisfied requirement while simultaneously covering the WLAN bands. And characteristics of gain and radiation patterns are determined for WLAN operating bands.

Wibro / WiFi dual-band antenna design for wireless broadband communication (무선 광대역 통신을 위한 Wibro/WiFi 이중대역 안테나 설계)

  • Kim, Gyeong-Rok;Kang, Sung-Woon;Hong, Yong-Pyo;Kim, Kab-Ki
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2018.05a
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    • pp.449-452
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    • 2018
  • In this paper, we design a Wibro / WiFi dual band microstrip antenna for wireless broadband communication. The proposed antenna is designed to have the characteristics of FR-4 (er = 4.3), size of $40[mm]{\times}40[mm]$, and usable in 2.31[GHz] and 5.8[GHz] bands of Wibro / WiFi. The simulation is performed by CST Microwave Studio 2014 The simulation result shows that the gain is 2.308[dB] at 2.31[GHz] and 2.985[dB] at 5.8[GHz]. S-parameters were also found to be less than -10[dB] (WSWR2: 1) in the desired frequency band, and a small number of parameters and a compact antenna were designed. It is expected that many users will use the mobile communication antenna for accurate and fast communication for smooth wireless broadband communication.

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Development of EM Wave Absorber for Wireless LAN at 2.4 GHz (2.4 GHz 무선랜용 전파흡수체 개발)

  • Lee, Dae-Hee;Kim, Dong-Il;Choi, Chang-Mook;Che, Seung-Hun
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • v.1
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    • pp.113-118
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    • 2006
  • Recently, wireless LANs are often applied in home or office because of its various of convenience. Frequency rage of wireless LANs specified by IEEE 802.11b is at 2.4 GHz. The bluetooth, the microwave oven, and the PDA(Personal Digital Assistants) uses ,however, the same frequency band. So problems will be produced in these environments, such as multi-pass interference and system-to-system interference. These problems can be eliminated by using EM wave absorber. In this paper, we designed and fabricated EM wave absorber using Sendust, $Al(OH)_3$, and CPE. The double-layered EM wave absorber with thickness of 1.5 mm has absorption ability more than 10 dB at 2.4 GHz.

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Ultra-Wideband Band Pass Filter with Controllable Dual Notched Bands Using the CRLH Stubs (CRLH-Stub를 이용한 이중대역 저지 초광대역 대역통과 여파기)

  • Jung, Seung-Back;Yang, Seung-In
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.49 no.7
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    • pp.65-70
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    • 2012
  • In this paper, a compact UWB (Ultra Wideband) BPF(Band-Pass Filter) with dual notched bands is proposed using a hybrid Composited Right-Left Handed (CRLH) and Defected Ground Structure (DGS). To avoid the interferences such as Wireless LAN (Center frequency: 2.4GHz and 5.8GHz), the CRLH is employed to obtain the dual notched bands and the DGS is used to obtain the wide stop-band above the pass-band. The fabricated filter has good performance and has more than 30dB rejection at the center frequency of 2.4 GHz and 5.8GHz. The dual notched bands are easily movable by changing the CRLH parameter. Also the insertion loss is less than 0.4dB in the lower pass-band and 0.7dB in the upper pass-band, and it has small group delay variation less than 0.6ns. The size of the fabricated filter is very compact (17mm*17mm).

Design and Implementation of a Stacked Microstrip Antenna with Broad Bandwidth for ISM Band (ISM 대역에서의 적층 구조를 이용한 광대역 마이크로스트립 안테나 설계 및 제작)

  • Kim, Min-Joon;Lee, Jong-Woo
    • Proceedings of the Korea Electromagnetic Engineering Society Conference
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    • 2003.11a
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    • pp.437-441
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    • 2003
  • The major drawback of the classical microstrip patch antennas Is their narrow band characteristic from 1% to 5%. In this paper, to improve this drawback, we designed the antenna with stacked structure having one drive patch connected with feed line and four identical radiation patches. Resonance is achieved by adjust ing coupling area between one drive patch and four identical radiation patches and changing the size of drive patch or radial ion patches. Used substrate is FR4(${\epsilon}_r$=4.6 and t=1.6mm) and designed center frequency is 2.45GHz. The designed antenna has a wide bandwidth of 380Mhz form 2.333GHz to 2.713GHz(about 15.5%) including ISM band from 2.4GHz to 2.4835GHz.

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