• Title/Summary/Keyword: K/Ka band

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A Study on Mobile Antenna System Design with Tri-band Operation for Broadband Satellite Communications and DBS Reception (광대역 위성 통신/방송용 삼중 대역 이동형 안테나 시스템 설계에 관한 연구)

  • Eom Soon-Young;Jung Young-Bae;Son Seong-Ho;Yun Jae-Seung;Jeon Soon-Ick
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.17 no.5 s.108
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    • pp.461-475
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    • 2006
  • In this paper, it is described about the tri-band mobile antenna system design to provide broadband multimedia and direct broadcasting services using goo-stationary Koreasat 3, simultaneously operated in Ka/K/Ku band. The radiating part of the antenna system with a fan beam characteristic in the elevation plane is composed of the quasi-offset dual shaped reflector and the tri-band feeder. The tri-band feeder is also composed of the Ka/K dual band feeder with the protruding dielectric rod, the circular polarizer, the ortho-mode transducer and the circular-polarized Ku band feed array. Especially, the Ka/K dual band circular polarizer was realized firstly using the comb-type structure. For fast satellite-tracking on the movement, the Ku band feed array has the structure of the $2{\times}2$ active phased array which can make electrical beams. And, the circular-polarized characteristic in the feed array was improved by $90^{\circ}$ rotating arrangement of four radiating elements polarized circularly by a $90^{\circ}$ hybrid coupler, respectively. Four beam forming channels to make electrical beams at Ku band are divided into the main beam channel and the tracking beam channel in the output, and noise temperature characteristics of each channel were analyzed on the basis of the contributions of internal sub_units. From the fabricated antenna system, the output power at $P_{1dBc}$ of Ka_Tx channel was measured more than 34.1 dBm and the measured noise figures of K/Ku_Rx channels were less than 2.4 dB and 1.5 dB, respectively, over the operating band. The radiation patterns with co- and cross-polarization in the tri-band were measured using a near-field measurement in the anechoic chamber. Especially, Ku radiation patterns were measured after correcting each initial phase of active channels with partial radiation patterns obtained from the independent excitation of each channel. The antenna gains measured in Ka/K/Ku band of the antenna system were more than 39.6 dBi, 37.5 dBi, 29.6 dBi, respectively. And, the antenna system showed good system performances such as Ka_Tx EIRP more than 43.7 dBW and K/Ku_Rx G/T more than 13.2 dB/K and 7.12 dB/K, respectively.

The Study on Multi-band Mixer for Adaptive Radar (적응형 레이다를 위한 다중대역 혼합기에 관한 연구)

  • Go, Min-Ho;Kang, Se-Byeok
    • The Journal of the Korea institute of electronic communication sciences
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    • v.16 no.6
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    • pp.1053-1058
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    • 2021
  • This paper presents the multi-band mixer which converts a X-, K- and Ka-band adaptively by adjusting the gate-bias voltage of an active device. The proposed mixer presented a conversion loss of -10 dB at -0.8 V gate-bias voltage for X-band, a conversion loss of -9 dB at -0.3 V gate-bias voltage for K-band and for Ka-band, a conversion loss of -7 dB at -0.2 V gate-bias voltage under the LO power of +6.0 dBm. The 1dB compression point (P1dB) is +0.5 dBm for all band.

Ka-band Satellite Broadcasting System using Scalable Video technology

  • Kim, Seung-Chul;Chang, Dae-Ig
    • Journal of Satellite, Information and Communications
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    • v.2 no.2
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    • pp.59-63
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    • 2007
  • In this paper, we propose an advanced Ka-band satellite HD broadcasting system using scalable video coding technology. As already known, it is not so easy to achieve reasonable link availability on Ka-band because of the rain-attenuation effect, and in case of HD broadcasting service it's more difficult. To overcome that problem, we propose an hierarchical broadcasting system based on H.264 SVC technology. In this paper, we suggest a few types of system scenario to realize the concept. Those scenarios are including DVB-S and DVB-S2 and spatially scalable video stream is the source stream in all cases.

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Implementation of Ka-band Satellite Broadcasting/LNB with High Dynamic Range (Ka-band 고감도 위성방송용/LNB 최적화 설계)

  • Mok, Gwang-Yun;Lee, Kyung-Bo;Rhee, Young-Chul
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2016.10a
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    • pp.66-69
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    • 2016
  • In this paper, we suggests a Ka-band LNB considering next-generation UHD satellite TVRO. Since Ka-band has grater attenuation than Ku-band in atmosphere, we designed the low-noise down-converter to improve receiving sensitivity and to extend a dynamic range of receiver. It aims to compensate a quality of ultra high definition transmission signal for rainfall. The low-noise block diagram consists of a three-staged amplifier (LNA), band-pass filter for deleting image (BPF), mixer and IF when considering nonlinear characteristics in the receiver RF front end module. Also, we showed a LNB through optimization processes affecting dynamic range directly in receiver FEM. Asa resuly of experiment, the gain of low-noise down-converter show between 58.5dB and 60.7dB, the noise figure has a high characteristic as 1.38dB. Finally, the phase noise of local oscillator is -63.10dBc at 100MHz offset frequency.

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Ka-Band MMIC VCO Design and its Fabrication (Ka-Band용 MMIC VCO의 설계 및 제작)

  • Kim, Wan-Sik;Kang, Seo;Kang, Dae-Hyun;Jeong, Seong-Il;Lee, Jae-Cheul;Lee, Jong-Arc
    • Journal of IKEEE
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    • v.7 no.2 s.13
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    • pp.230-235
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    • 2003
  • A small and integrated MMIC VCO(Voltage Controlled Oscillator) at Ka-band has been developed. This oscillator was designed as Clapp-Gouriet type scheme, fabricated, and implemented on the carrier. This was connected to an alumna substrate on the carrier providing output port for module, utilizing ribbon and wire bonding technique allowing the loss of 0.2dB. This VCO module showed the excellent performance.

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Compact L Shape Shorted Pin Patch for Local Oscillator Port of X-, K-, Ka-Band Radar Detector (Radar Detector의 국부 발진단에 적용 가늘한 X, K, Ka 대역 L 모양의 소형 Shorted Pin Patch)

  • Ko, Seung-Tae;Kim, Han-Yong;Lee, Hyun-Taek;Park, Jae-Kyu;Lee, Jeong-Hae
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.18 no.8
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    • pp.854-861
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    • 2007
  • In this paper, a compact L-shaped shorted pin patch to be used at local oscillator port in radar detector is proposed. Shorted pin patch operates as short-open cavity while conventional patch operates as open-open cavity. Shorted pins are L-shaped to obtain quarter wave length and three-quarter wave length resonance for the fundamental(X-band) and $2^{nd}(3^{rd})$(K- and Ka-band) mode resonance frequency, respectively. Thus, the proposed patch can be compact. It is also possible to operate at triple band(X-, K-, Ka-band) with small return loss in radar detector, It is expected that shorted pin patch could improve radar detector sensitivity.

A Scalable Satellite Broadcasting System in 21GHz Band (21GHz 대역 스케일러블 위성방송 시스템 구현)

  • Kim, Dong-Hwan;Chung, Beob-Ki;Lee, Woo-Geun;Kim, Seung-Chul;Chang, Tae-Gyu
    • Proceedings of the KIEE Conference
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    • 2008.10b
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    • pp.513-514
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    • 2008
  • A scalable satellite broadcasting system is designed to guarantee quality of multimedia service cooperatively utilizing both Ku Band and Ka band. In the system, video streams are separated into a base layer and an enhancement layer, and are transmitted over the two channels, Ku Band and Ka band, respectively. A basic quality of service using the base layer stream can be provided even when the enhancement layer stream over Ka band channel is unavailable by rain attenuation. A rain fall model is simulated using Barlett-Lewis Pulse model and is used in the operation test of the implemented sacalable satellite broadcasting system.

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Characterizations of Moisture-Sealed Waveguide-to-Microstrip Transitions for Ka-band Transceivers

  • Kim, Kang-Wook;Na, Chae-Ho;Woo, Dong-Sik
    • Journal of electromagnetic engineering and science
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    • v.2 no.2
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    • pp.105-111
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    • 2002
  • New high-performance Ka-band waveguide-to-microstrip transitions for millimeter-wave transceiver applications have been developed and characterized. These transitions are probe-type, but the dielectric material completely covers the whole waveguide aperture, thus providing moisture-barrier and robustness in the probe section. The new probe transitions are also designed to be less sensitive to fabrication tolerances. Further performance enhancements have been obtained by placing vias around the waveguide aperture. Also, the resonance phenomena associated with waveguide wall-penetration have been identified. The developed probe transitions provide insertion loss less than 0.4 dB over entire Ka-band frequencies, but can be optimized for narrowband applications with insertion loss less than 0.2 dB.

OPTIMIZED CONFIGURATIONS OF KA-BAND TRANSPONDER SUBSYSTEM FOR ETRI'S SATCOM SYSTEM

  • Lee Yong-Min;Lee Seong-Pal;Park Jae-Woo
    • Bulletin of the Korean Space Science Society
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    • 2004.10b
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    • pp.312-315
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    • 2004
  • In order to optimize the configurations of Ka-band transponder subsystem, the tradeoff design has been performed iterately with emphasis on the improving performances of the payload system as well as effectiveness of Satellite Communication (SATCOM) system operation. It is necessary to allocate performance to the transponder equipments and to keep providing the main services. It begins with analyzing the requirements and allocating performance parameters by establishing budgets for electrical and mechanical characteristics. In this paper, introduction of SATCOM system and finally optimized Ka-band transponder configuration that is to be used for preliminary design will be mainly presented.

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Ka-band Antenna Subsystem Pointing Variation Analysis (Ka 대역 안테나 서브시스템 포인팅 에러 분석)

  • Lee, Yong-Deok;Choe, Jang-Seop;Park, Jae-U;Lee, Seong-Pil
    • Journal of Satellite, Information and Communications
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    • v.1 no.2
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    • pp.32-37
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    • 2006
  • ETRI has been developing the Ka-band Antenna subsystem for COMS(Communications, Ocean, and Meteorological Satellite) which will be launched at the end of 2008. The antenna subsystem employs the two parts: East Panel and West panel of spacecraft. ETRI in cooperation with domestic companies are under design phase for the antenna subsystem development. This paper focuses in the Ka-band reflector pointing error analysis to verify the antenna subsystem performance specification, especially EOC gain variation etc. The analysis performed is that induced by reflector surface deformation as a result of thermo elastic distortion. Beam pattern variations are verified by the use TICRA

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