• Title/Summary/Keyword: radio astronomy receiver system

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Operation of the Radio Occultation Mission in KOMPSAT-5

  • Choi, Man-Soo;Lee, Woo-Kyoung;Cho, Sung-Ki;Park, Jong-Uk
    • Journal of Astronomy and Space Sciences
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    • v.27 no.4
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    • pp.345-352
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    • 2010
  • Korea multi-purpose satellite-5 (KOMPSAT-5) is a low earth orbit (LEO) satellite scheduled to be launched in 2010. To satisfy the precision orbit determination (POD) requirement for a high resolution synthetic aperture radar image of KOMPSAT-5, KOMPSAT-5 has atmosphere occultation POD (AOPOD) system which consists of a space-borne dual frequency global positioning system (GPS) receiver and a laser retro reflector array. A space-borne dual frequency GPS receiver on a LEO satellite provides position data for the POD and radio occultation data for scientific applications. This paper describes an overview of AOPOD system and operation concepts of the radio occultation mission in KOMPSAT-5. We showed AOPOD system satisfies the requirements of KOMPSAT-5 in performance and stability.

Phase and Amplitude Drift Research of Millimeter Wave Band Local Oscillator System

  • Lee, Chang-Hoon;Je, Do-Heung;Kim, Kwang-Dong;Sohn, Bong-Won
    • Journal of Astronomy and Space Sciences
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    • v.27 no.2
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    • pp.145-152
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    • 2010
  • In this paper, we developed a local oscillator (LO) system of millimeter wave band receiver for radio astronomy observation. We measured the phase and amplitude drift stability of this LO system. The voltage control oscillator (VCO) of this LO system use the 3 mm band Gunn oscillator. We developed the digital phase locked loop (DPLL) module for the LO PLL function that can be computer-controlled. To verify the performance, we measured the output frequency/power and the phase/amplitude drift stability of the developed module and the commercial PLL module, respectively. We show the good performance of the LO system based on the developed PLL module from the measured data analysis. The test results and discussion will be useful tutorial reference to design the LO system for very long baseline interferometry (VLBI) receiver and single dish radio astronomy receiver at the 3 mm frequency band.

Development of a Dual-Circular Polarizer for the KVN Receivers

  • Chung, Moon-Hee;Je, Do-Heung;Han, Seog-Tae;Lee, Jung-Won
    • Journal of Astronomy and Space Sciences
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    • v.26 no.3
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    • pp.345-354
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    • 2009
  • A stepped septum polarizer has been designed and fabricated for the 43 GHz band KVN receiver system. The dual-circular polarizer converts left and right hand circularly polarized signals into linear polarizations in two separated rectangular waveguides. Measurements show that the performance of the designed septum polarizer covering 42-48 GHz frequency band is adequate to meet the requirement of KVN receivers. Especially, a polarizer for the KVN receiver of 85-95 GHz frequency band can be fabricated by scaling the dimensions of the septum polarizer developed in this paper.

A CONSTRUCTION OF THE REAL TIME MONITORING SYSTEM OF THE SOLAR RADIO DISTURBANCE: II. 2.8GHz RADIO RECEIVER AND RADIO ENVIRONMENT (태양전파교란 실시간 모니터링 시스템구축: II. 2.8GHz 수신기 제작 및 전파환경측정)

  • Kim, Yong-Gi;Park, Sa-Ra;Lee, Dae-Young;Yoon, Joh-Na
    • Journal of Astronomy and Space Sciences
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    • v.25 no.1
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    • pp.61-70
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    • 2008
  • As the second step of the real time monitoring system of the solar radio disturbance, we constructed a 2.8 GHz radio receiver with 500 MHz bandwith. Using the control and observing system (Yoon et al. 2004), we observed the Sun, and found some frequencies, which disturb the Solar radio flux to be observed. DMB and aiport control frequencies are identified as responsible for this disturbance. As well as the testing the receiver, the measurment of the radio environment at 2.8 GHz with 500 MHz bandwith are carried out around Chungbuk National University. In fact, the radio power of the two frequencies, 2.649 GHz and 2.874 GHz is so high that we can not observe the Solar radio signal at 2.8 GHz. We report some results of this measurment and suggest the method to overcome this problem. We conclude also that the frequecies, which are important for the astronomy, should be protected in the future.

A DESIGN STUDY OF 100㎓ BAND LOCAL OSCILLATOR SYSTEM BY USING YIG OSCILLATOR (YIG 발진기를 이용한 100㎓ 대역 국부발진 시스템 설계연구)

  • Lee, Chang-Hoon;Kim, K.D.;Kim, H.R.;Jung, M.H.;Han, S.T.;Jae, D.H.;Kim, T.S.
    • Journal of Astronomy and Space Sciences
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    • v.20 no.3
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    • pp.185-196
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    • 2003
  • In this paper, we make a design study for a local oscillator system of the 100 ㎓ band cosmic radio receiving system. We use the YIG oscillator with digital driver which is the main oscillator. This oscillator has a good frequency and phase stability at some temperature variation, and the easy computer aided control characteristics. This total system designed to two subsystem, first is the oscillator system include YIG oscillator, tripler, harmonic mixer and triplexer etc., second is the PLL system to supply the precise and stable local oscillator frequency to mixer. The proposed local oscillator system in this paper can be used in a single or multi pixel receiver because this system can be lock the local oscillator frequency automatically using PC.

A DESIGN DEVELOPMENT OF 400MHz BAND AUTOCORRELATOR FOR RADIO ASTRONOMY OBSERVATION (우주전파 관측용 400MHz 대역 자기 상관분광기 설계 및 제작)

  • Lee, Chang-Hoon;Choi, Han-Kyu;Kim, Kwang-Dong;Han, Seog-Tae;Kim, Tae-Sung;Byun, Doo-Young;Koo, Bon-Chul
    • Publications of The Korean Astronomical Society
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    • v.18 no.1
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    • pp.51-60
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    • 2003
  • This paper is the research and development including the system design and the prototype system building of the 400MHz wide-band digital autocorrelation spectrometer system for radio astronomy observation, which will be used as back-end signal processing unit of the Dual channel SIS receiver at Taeduk Radio Astronomy Observatory. So in this paper, we performed development of the high speed digitizing sampler, the circular memory buffer, and the correlator module for the 400MHz wide-band digital autocorrelator. This developed system will be use at TRAO after the housing and some calibration.

PLL System of a Millimeter-Wave Band Receiver using YIG VCO (YTG VCO를 이용한 밀리미터파 대역 수신기의 PLL 시스템 연구)

  • Lee Changhoon;Chung M. H.;Kim K. D.;Kim H. R.
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.42 no.11
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    • pp.45-52
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    • 2005
  • In this paper, we propose the PLL system of the local oscillator system for the millimeter wave band's radio astronomy receiving system. The development of the proposed local oscillator system based on the YIG oscillator VCO with $26.5\~40GHz$ specification. This system consists of the oscillator part including the YIG VCO, the harmonic mixer, and the isolator, the RF processing part including the triplexer, limiter, and RF discrimination processor, and the PLL system including YIG modulator and controller. Based on this configuration, we verify the frequency and power stability of the developed local oscillator system according to some temperature variation. From this test results we confirm the stable output frequency and power characteristic peformance of the developed LO system at constant temperature.

DEVELOPMENT OF 230 GHZ RADIO RECEIVER SYSTEM FOR SRAO

  • Lee, Jung-Won;Kim, Chang-Hee;Kang, Hyunwoo;Lee, Bangwon;Han, Junghwan;Lee, Seok-Ho;Jeong, Il-Gyo;Koo, Bon-Chul;Park, Yong-Sun
    • Journal of The Korean Astronomical Society
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    • v.46 no.6
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    • pp.225-234
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    • 2013
  • We develop a radio receiver system operating at ${\lambda}{\sim}1.3$ mm for the 6 m telescope of Seoul Radio Astronomy Observatory. It consists of a dual polarization receiver, a couple of IF processing units, two FFT spectrometers, and associated software. By adopting sideband-separating superconductor mixers with image band terminated to waveguide load at 4.2 K, we achieve $T_{RX}{\leq}100$ K and $T_{sys}$ less than 150 K at best weather condition over 210-250 GHz frequency range. The intermediate frequency signal of 3.5-4.5 GHz is down converted to 0-1 GHz and fed into the FFT spectrometers. The spectrometer covers 1 GHz bandwidth with a spectral resolution of 61 KHz. Test observations are conducted toward several radio sources to evaluate the performance of the system. Aperture and beam efficiencies measured by observing planets are found to be typically 44 ~ 59% and 47 ~ 61%, respectively over the RF band, which are consistent with those measured at 3 mm band previously.

DESIGN OF THE IF DISTRIBUTOR AND V/F CONVERTER FOR RECEIVER SYSTEM (우주전파 수신기를 위한 IF 분배기 및 V/F 컨버터 설계)

  • Kim, Kwang-Dong;Yim, In-Sung;Byun, Do-Young;Song, Min-Gyu
    • Publications of The Korean Astronomical Society
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    • v.22 no.3
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    • pp.83-87
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    • 2007
  • We designed the Intermediate Frequency(IF) distributor for multi beam backend system and manufactured Voltage to Frequency Converter(VFC) to measure the multi-beam receiver performance. Multi beam receiver has 15 channel receivers and can get 15 spectrums at once. The multi beam receiver has more observation efficiency than single beam receiver. We manufactured the 15 IF distributors to distribute IF signal for Autocorrelation spectrometer that is radio signal processor. Also, we manufactured the VF Converter to test the performance measurement of receiver for Korea VLBI Network(KVN) system which is under-construct in Seoul, Ulsan and Jeju. As a result of performance measurement, we could obtain linearity of 99.4% on the input power vs output frequency and measured the operating range of input frequency.