• 제목/요약/키워드: Imaging spectrometer

검색결과 142건 처리시간 0.027초

Optical Design of A Compact Imaging Spectrometer for STSAT3

  • Lee, Jun-Ho;Jang, Tae-Seong;Yang, Ho-Soon;Rhee, Seung-Wu
    • Journal of the Optical Society of Korea
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    • 제12권4호
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    • pp.262-268
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    • 2008
  • A compact imaging spectrometer (COMIS) for use in the STSAT3 microsatellite is currently under development. It is scheduled to be launched into a low Sun-synchronous Earth orbit (${\sim}700km$) by the end of 2010. COMIS was inspired by the success of CHRIS, which is a small hyperspectral imager developed for the ESA microsatellite PROBA. COMIS is designed to achieve nearly equivalent imaging capabilities of CHRIS in a smaller (65 mm diameter and 4.3 kg mass) and mechanically superior (in terms of alignment and robustness) package. Its main operational goal will be the imaging of Earth's surface and atmosphere with ground sampling distances of ${\sim}30m$ at the $18{\sim}62$ spectral bands ($4.0{\sim}1.05{\mu}m$). This imaging will be used for environmental monitoring, such as the in-land water quality monitoring of Paldang Lake, which is located next to Seoul, South Korea. The optics of COMIS consists of two parts: imaging telescope and dispersing relay optics. The imaging telescope, which operates at an f-ratio of 4.6, forms an image (of Earth's surface or atmosphere) onto an intermediate image plane. The dispersion relay optics disperses the image and relay it onto a CCD plane. All COMIS lenses and mirrors are spherical and are made from used silica exclusively. In addition, the optics is designed such that the optical axis of the dispersed image is parallel to the optical axis of the telescope. Previous efforts focused on manufacturing ease, alignment, assembly, testing, and improved robustness in space environments.

광섬유 피드 리트로마운트형 분광계 (AN OPTICAL FIBER FEED LITTROW-MOUNTED SPECTROMETER)

  • 배지훈;송재원;윤태석
    • 천문학논총
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    • 제27권3호
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    • pp.87-93
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    • 2012
  • A low-dispersion fiber feed Littrow-mounted grating spectrometer for education was designed and fabricated. The dispersion element is a reflective type blazed grating Edmundoptics NT 46-075 (spatial frequency 600 lines/mm, dimension $30mm{\times}30mm$, blazed angle 8.6 degree). The optical fiber coupler module for optical guiding from telescope to spectrometer is composed of a multi-mode FC connector - FC connector optical fiber patch cord (core/cladding diameter $50{\mu}m/125{\mu}m$) and two 1.25" throw-tube couplers. The lens for collimating and imaging is a general purpose focal length 50 mm camera lens (f/1.8). The device for optical path control is a rectangular prism (size $25mm{\times}25mm$). The imaging camera sensor is a Meade DSI Pro 2 CCD sensor (black and white, $752{\times}582$ pixels and pixel size $8.3{\mu}m{\times}8.6{\mu}m$). Softwares for data logging and analysis consist of Meade Autostar Suite, NIH imagej and Vernier Logger Pro 3. The wavelength coverage range of the spectrometer is 205 nm at central wavelength 550 nm. The wavelength resolution is 1.7 nm.

과학기술위성3호 부탑재체 소형영상분광기 미광 해석 (Stray Light Analysis of a Compact Imaging Spectrometer for a Microsatellite STSAT-3)

  • 이진아;이준호
    • 한국광학회지
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    • 제23권4호
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    • pp.167-171
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    • 2012
  • 과학기술위성3호 부탑재체인 COMIS(Compact Imaging Spectrometer)는 무게 4.25 kg의 소형영상분광기로써 지표면 및 대기과학을 연구할 목적으로 개발되었다. COMIS는 지표면, 대기, 수면으로부터 반사되는 태양 에너지를 고도 700 km에서 가시광 및 근적외선 영역(0.4 ~1.05 ${\mu}m$)에서 해상도 27 m, 관측폭 28 km, 파장 분해능 2 ~ 15 nm를 갖도록 결상 광학계와 분광 광학계로 구성된다. 먼저 지상 $27m{\times}28km$의 해당되는 지표면에서 반사된 빛은 COMIS의 결상 광학계에 의하여 상면에 위치한 $11.8{\mu}m{\times}12.1mm$의 선형 슬릿으로 맺히고, 이후 약 1.1배의 배율을 갖는 분광 광학계의 상면에 $1.4mm{\times}13.3mm$의 크기를 갖는 분광 스펙트럼 영상으로 나타난다. 이 때 부분 반사 및 산란 등에 의한 신호대잡음비(SNR, signal to noise ratio) 저하를 방지하기 위하여 렌즈 및 거울 면에 무반사 및 고반사 코팅이 적용되었고, 내부에는 미광 차단 구조물 등이 설치되었다. 미광 차단 설계의 적정성을 확인하기 위하여 미광 모델 수립과 상용 프로그램을 이용한 미광 해석을 수행하였다. 해석 결과 미광의 세기는 정상 결상 대비 무시할 정도의 값($10^{-5}$)으로 영상에는 실질적인 영향이 없음을 확인하였다.

분석기기지원을 위한 원격 데이터 분석 시스템 개발 (Development of Remote Data Analysis System for the Joint Use of Equipments)

  • 최인식
    • 기술혁신학회지
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    • 제2권3호
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    • pp.94-106
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    • 1999
  • In Korea Basic Science Institute(KBSI) the remote data analysis system is developed for the joint use of advanced equipments. This system enables the researchers to access the datas which are produced at KBSI and analyse them by Java program on the Web,. Except Web browser such as Internet Explorer or Netscape Navigator no additional softwares are required for analysing data. We have developed remote data analysis systems for five major equipments which KBSI supports for the researchers, The systems which are developed are those for NMR spectrometer High Reso-lution Tandem mass Spectrometer Microscopic Imaging System DNA Sequencer and Natural Ra-dioactivity Measruement System, These programs work on any computer platform and any operat-ing system only if the internet is available. This remote data analysis system will be served as a part of Collaboratory the remote collaborative system.

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3번 부호화한 하다마드 변환 영상 분광계의 스펙트럼 복원법 (Triply Encoded Hadamard Transform Imaging Spectrometer: Spectrum Recovery Method)

  • 박영재;서익수;박진배
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 추계학술대회 논문집 학회본부 B
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    • pp.597-599
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    • 1999
  • Triply encoded HTIS(hadamard transform imaging spectrometer) is a system which applies the grill spectrometer to the HTIS. we consider a nonideality of mask transparent characteristic in estimating spectrum. Triply encoded system increases the SNR(signal to noise ration) by multiplexing effect. In this paper, we suggest an advanced $T^{-1}$ method for spectrum recovery. Then, we proved the superiority of the suggested method by comparing the average MSE(mean square error) of the other recovery methods.

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그래핀의 대면적 이미지 특성 분석 (Wide Field Imaging Analysis of Graphene)

  • 권강혁;김나영;;원동관;조승민;박지웅
    • 한국광학회지
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    • 제24권3호
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    • pp.143-147
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    • 2013
  • 라만 분광기는 그래핀의 특성을 분석하기 위한 필수적인 방법이다. 상용 마이크로 라만 분광기는 작은 면적에 대해 유용하게 사용되고 있으나 작은 면적 측정으로 인하여 산업적으로는 시료 측정 등에 제한적으로 사용되고 있다. 본 논문에서는 그래핀의 대면적 이미지 얻을 수 있는 라만 분광기에 대해 제안하였다. 이 이미지를 이용하여 그래핀의 유무 및 결함에 대한 정보를 빠르게 얻었다. 이를 이용하여, 실시간으로 그래핀에 대한 결함 유무, 층 수에 대한 균일도를 확인할 수 있으며, 양산 그래핀에 대한 품질 평가에 활용할 수 있을 것이다.

Assessment and Correction of the Spectral Quality for the Savart Polarization Interference Imaging Spectrometer

  • Zhongyi Han;Peng Gao;Jingjing Ai;Gongju Liu;Hanlin Xiao
    • Current Optics and Photonics
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    • 제7권5호
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    • pp.518-528
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    • 2023
  • As an effective means of remotely detecting the spectral information of the object, the spectral calibration for the Savart polarization interference imaging spectrometer (SPIIS) is a basis and prerequisite of information quantification, and its experimental calibration scheme is firstly proposed in this paper. In order to evaluate the accuracy of the spectral information acquisition, the linear interpolation, cubic spline interpolation, and piecewise cubic interpolation algorithms are adopted, and the precision of the quadratic polynomial fitting is the highest, whose fitting error is better than 5.8642 nm in the wavelength range of [500 nm, 820 nm]. Besides, the inversed value of the spectral resolution for the monochromatic light is greater than the theoretical value, and the deviation between them becomes larger with the wavelength increasing, which is mainly caused by the structural design of the SPIIS, together with the rationality of the spectral restoration algorithm and the selection of the maximum optical path difference (OPD). This work demonstrates that the SPIIS has achieved high performance assuring the feasibility of its practical use in various fields.

과학기술위성3호 소형영상분광기 발사모델 환경시험 결과 (Environmental Test Results of a Flight Model of a Compact Imaging Spectrometer for a Microsatellite STSAT-3)

  • 이상준;김정현;이준호;이치원;장태성;강경인
    • 한국광학회지
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    • 제22권4호
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    • pp.184-190
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    • 2011
  • 과학기술위성3호 부탑재체인 소형영상분광기 COMIS(Compact Imaging Spectrometer)는 400 - 1050 nm의 관측 대역에서 분광 관측을 수행하는 영상 분광기이다. COMIS는 2012년 고도 700 km의 원 궤도에서 발사 된 후 27 m의 공간분해능과 2 - 15 nm의 파장 분해능을 갖도록 설계되었다. 본 논문에서는 COMIS 비행 모델의 환경시험 수행결과를 기술한다. 발사 환경인 진동 가진에 의한 영상분광기의 광학적, 구조적인 변화 여부와 우주환경인 열.진공 상태에서의 기능 시험을 수행하여 안정성 및 신뢰성을 검증 받았다. 우주공간에서의 환경으로 일컬어지는 고진공($10^{-5}$ torr이하)과 $-30^{\circ}C{\sim}35^{\circ}C$의 고온 및 저온의 열적 변화 상태를 모사하는 시험에서 정상적인 기능을 보였고, 10 grms의 랜덤 진동 가진 전.후의 고유 진동수는 1% 이내의 변화량을 보였다. 환경시험 전 후로 영상분광기의 변조전달함수(MTF, Modulation Transfer Function) 측정을 하여 광학 성능이 유지됨을 확인하였다. 환경시험을 마친 영상분광기는 현재 과학기술위성3호 본체와의 조립을 진행 중에 있으며 2012년 발사 예정에 있다.

Ultrahigh-Resolution Spectral Domain Optical Coherence Tomography Based on a Linear-Wavenumber Spectrometer

  • Lee, Sang-Won;Kang, Heesung;Park, Joo Hyun;Lee, Tae Geol;Lee, Eun Seong;Lee, Jae Yong
    • Journal of the Optical Society of Korea
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    • 제19권1호
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    • pp.55-62
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    • 2015
  • In this study we demonstrate ultrahigh-resolution spectral domain optical coherence tomography (UHR SD-OCT) with a linear-wavenumber (k) spectrometer, to accelerate signal processing and to display two-dimensional (2-D) images in real time. First, we performed a numerical simulation to find the optimal parameters for the linear-k spectrometer to achieve ultrahigh axial resolution, such as the number of grooves in a grating, the material for a dispersive prism, and the rotational angle between the grating and the dispersive prism. We found that a grating with 1200 grooves and an F2 equilateral prism at a rotational angle of $26.07^{\circ}$, in combination with a lens of focal length 85.1 mm, are suitable for UHR SD-OCT with the imaging depth range (limited by spectrometer resolution) set at 2.0 mm. As guided by the simulation results, we constructed the linear-k spectrometer needed to implement a UHR SD-OCT. The actual imaging depth range was measured to be approximately 2.1 mm, and axial resolution of $3.8{\mu}m$ in air was achieved, corresponding to $2.8{\mu}m$ in tissue (n = 1.35). The sensitivity was -91 dB with -10 dB roll-off at 1.5 mm depth. We demonstrated a 128.2 fps acquisition rate for OCT images with 800 lines/frame, by taking advantage of NVIDIA's compute unified device architecture (CUDA) technology, which allowed for real-time signal processing compatible with the speed of the spectrometer's data acquisition.

Optical Design of a Snapshot Nonmydriatic Fundus-imaging Spectrometer Based on the Eye Model

  • Zhao, Xuehui;Chang, Jun;Zhang, Wenchao;Wang, Dajiang;Chen, Weilin;Cao, Jiajing
    • Current Optics and Photonics
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    • 제6권2호
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    • pp.151-160
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    • 2022
  • Fundus images can reflect ocular diseases and systemic diseases such as glaucoma, diabetes mellitus, and hypertension. Thus, research on fundus-detection equipment is of great importance. The fundus camera has been widely used as a kind of noninvasive detection equipment. Most existing devices can only obtain two-dimensional (2D) retinal-image information, yet the fundus of the human eye also has spectral characteristics. The fundus has many pigments, and their different distributions in the eye lead to dissimilar tissue penetration for light waves, which can reflect the corresponding fundus structure. To obtain more abundant information and improve the detection level of equipment, a snapshot nonmydriatic fundus imaging spectral system, including fundus-imaging spectrometer and illumination system, is studied in this paper. The system uses a microlens array to realize snapshot technology; information can be obtained from only a single exposure. The system does not need to dilate the pupil. Hence, the operation is simple, which reduces its influence on the detected object. The system works in the visible and near-infrared bands (550-800 nm), with a volume less than 400 mm × 120 mm × 75 mm and a spectral resolution better than 6 nm.