• 제목/요약/키워드: Imaging spectrometer

검색결과 142건 처리시간 0.03초

과학기술위성 3호 운영개념 (STSAT-3 Operations Concept)

  • 이승헌;박종오;이승우;정태진;이대희;이준호
    • 항공우주기술
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    • 제10권2호
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    • pp.29-36
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    • 2011
  • 과학기술위성 3호는 우리별 위성 시리즈와 과학기술위성 1호, 2호를 잇는 소형위성으로 첨단 위성체 핵심 기술 선행연구, 첨단 우주 및 지구 과학 탑재체 개발, 우주분야 인력 양성 등의 다양한 역할을 수행한다. 과학기술위성의 주탑재체는 다목적 적외선 영상시스템으로 우리은하와 황도극지방을 관측하여 우주의 기원을 연구한다. 다목적 적외선 영상시스템에는 국산 적외선 센서의 우주검증을 위해 지표면의 적외선 영상 획득 임무도 추가되었다. 부탑재체는 초소형 영상 분광기로서 농작물의 작황, 댐의 수질 예측 모델, 에어로졸 광학 두께 측정 연구 등에 활용된다. 본 논문에서는 2012년 말에 발사되어 주어진 임무기간 동안 과학기술위성 3호의 다양한 임무 수행을 위한 운영개념을 설명한다.

적외선 우주배경복사 관측 실험 국제 공동 연구 (INTERNATIONAL COOPERATION OF THE COSMIC INFRARED BACKGROUND EXPERIMENT)

  • 이대희;남욱원;이성호;진호;육인수;김건희;박수종
    • 천문학논총
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    • 제21권2호
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    • pp.21-26
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    • 2006
  • A Korean team (Korea Astronomy and Space Science Institute, Korea Basic Science Institute, and Kyung Hee University) takes part in an international cooperation project called CIBER (Cosmic Infrared Background ExpeRiment), which has begun with Jet Propulsion Laboratory (JPL) in USA and Institute of Space and Astronautical Science (ISAS) in Japan. CIBER is a rocket-borne instrument, of which the scientific goal is to measure the cosmic near-infrared extra-galactic background to search for signatures of primordial galaxy formation. CIBER consists of a wide-field two-color camera, a low-resolution absolute spectrometer, and a high-resolution narrow-band imaging spectrometer. The Korean team is in charge of the ground support electronics and manufacturing of optical parts of the narrow-band spectrometer, which will provide excellent opportunities for science and technology to Korean infrared groups.

Construction of a Ginsenoside Content-predicting Model based on Hyperspectral Imaging

  • Ning, Xiao Feng;Gong, Yuan Juan;Chen, Yong Liang;Li, Hongbo
    • Journal of Biosystems Engineering
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    • 제43권4호
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    • pp.369-378
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    • 2018
  • Purpose: The aim of this study was to construct a saponin content-predicting model using shortwave infrared imaging spectroscopy. Methods: The experiment used a shortwave imaging spectrometer and ENVI spectral acquisition software sampling a spectrum of 910 nm-2500 nm. The corresponding preprocessing and mathematical modeling analysis was performed by Unscrambler 9.7 software to establish a ginsenoside nondestructive spectral testing prediction model. Results: The optimal preprocessing method was determined to be a standard normal variable transformation combined with the second-order differential method. The coefficient of determination, $R^2$, of the mathematical model established by the partial least squares method was found to be 0.9999, while the root mean squared error of prediction, RMSEP, was found to be 0.0043, and root mean squared error of calibration, RMSEC, was 0.0041. The residuals of the majority of the samples used for the prediction were between ${\pm}1$. Conclusion: The experiment showed that the predicted model featured a high correlation with real values and a good prediction result, such that this technique can be appropriately applied for the nondestructive testing of ginseng quality.

Near-Infrared Imaging Spectrometer onboard NEXTSat-1

  • 정웅섭;이대희;문봉곤;박귀종;박성준;표정현;박영식;김일중;박원기;김민규;이덕행;남욱원;한원용;임명신;이형목;이정은;신구환;채장수
    • 천문학회보
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    • 제38권1호
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    • pp.70.1-70.1
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    • 2013
  • New space program for "Next-Generation Small Satellite (NEXTSat)" launched last year after the success of the series of Science & Technology Satellite (STSAT). KASI proposed the near-infrared imaging spectrometer as a scientific payload onboard NEXTSat-1. It was selected as one of two scientific payloads. The approved scientific payload is the near-infrared imaging spectrometer for the study of star formation history (NISS). The efficient near-infrared observation can be performed in space by evading the atmospheric emission as well as other thermal noise. The observation of cosmic near-infrared background enables us to reveal the early Universe in an indirect way through the measurement of absolute brightness and spatial fluctuation. The detection of near-infrared spectral lines in nearby galaxies, cluster of galaxies and star forming regions give us less biased information on the star formation. In addition, the NISS will be expected to demonstrate our technologies related to the development of the Korea's leading near-infrared instrument for the future large infrared telescope, SPICA.

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Electronics Design of the NISS onboard NEXTSat-1

  • Lee, Dae-Hee
    • 천문학회보
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    • 제40권2호
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    • pp.55.2-55.2
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    • 2015
  • NISS is a unique spaceborne imaging spectrometer (R = 20) onboard the Korea's next micro-satellite NEXTSat-1 to investigate the star formation history of Universe in near infrared wavelength region (0.9 - 3.8 um), with a customized H1RG IR sensor(Jeong 2014). In this paper, we will introduce the compact electronics system (Fig. 1) as well as the novel readout method to reduce the 1/f noise for NISS.

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Development of a Plasma Training Lab kart: System Setup and Numerical Simulation

  • Joo, Junghoon
    • Applied Science and Convergence Technology
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    • 제26권6호
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    • pp.195-200
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    • 2017
  • A mobile lab kart for plasma training is developed with a high vacuum pumping system, vacuum gauges and a glass discharge tube powered by a high voltage transformer connected to a household 60 Hz line. A numerical model is developed by using a commercial multiphysics software package, CFD-ACE+ to analyze the experimental data. Simulations for argon and nitrogen were carried out to provide fundamental discharge characteristics. Variations of the kart configuration were demonstrated: a glass tube with three electric probes, optical emission spectrometer attachment and infra red thermal imaging system to give more detailed analysis of the discharge characteristics.

PHYSICS REVEALED BY BROAD-RANGE CO LADDERS AND FINE-STRUCTURE LINES IN M83

  • Wu, Ronin
    • 천문학논총
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    • 제32권1호
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    • pp.147-149
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    • 2017
  • Since the launch of the Herschel Space Observatory, our understanding about the photo-dissociation regions (PDR) has taken a step forward. In the bandwidth of the Fourier Transform Spectrometer (FTS) of the Spectral and Photometric Imaging REceiver (SPIRE) on board Herschel, ten CO rotational transitions, including J = 4 - 3 to J = 13 - 12, and three fine structure lines, including [$C{\small{I}}$] 609, [$C{\small{I}}$] 370, and [$N{\small{II}}$] $205{\mu}m$, are covered. I present our findings from the FTS observations at the nuclear region of M83, based on the spatially resolved physical parameters derived from the CO spectral line energy distribution (SLED) map and the comparisons with the dust properties and star-formation tracers. This article discusses (1) the potential of using [$N{\small{II}$] 205 and [$C{\small{I}}$] $370{\mu}m$ as star-formation tracers; (2) the excitation mechanisms of warm CO in the nuclear region of M83.

페로브스카이형 Ba계열의 미세구조 특성 (A Study on Property of Microstructuree for Ba System of Perovskite Structure)

  • 송민종;동경래;김창복;최성관;박용순
    • 대한디지털의료영상학회논문지
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    • 제13권4호
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    • pp.185-189
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    • 2011
  • To assess the prevalence of various radiological reduction methods for childhood intussusception in training hospitals by means of a nationwide phone survey, and to demonstrate recent trends in this area by comparing the findings with those obtained in a survey conducted. $BaTiO_3$ system was prepared by using fabrication of classical conditioning ceramics. Polycrystalline and surface structure characteristics of the specimens were measured by X-ray diffraction, SEM(Scanning Electron Microscopy) and EDAX (Energy Dispersive Spectrometer), respectively.

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