• Title/Summary/Keyword: Reflectance detector

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Application of Near Infrared Spectroscopy for Nondestructive Evaluation of Nitrogen Content in Ginseng

  • Lin, Gou-lin;Sohn, Mi-Ryeong;Kim, Eun-Ok;Kwon, Young-Kil;Cho, Rae-Kwang
    • Proceedings of the Korean Society of Near Infrared Spectroscopy Conference
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    • 2001.06a
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    • pp.1528-1528
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    • 2001
  • Ginseng cultivated in different country or growing condition has generally different components such as saponin and protein, and it relates to efficacy and action. Protein content assumes by nitrogen content in ginseng radix. Nitrogen content could be determined by chemical analysis such as kjeldahl or extraction methods. However, these methods require long analysis time and result environmental pollution and sample damage. In this work we investigated possibility of non-destructive determination of nitrogen content in ginseng radix using near-infrared spectroscopy. Ginseng radix, root of Panax ginseng C. A. Meyer, was studied. Total 120 samples were used in this study and it was consisted of 6 sample sets, 4, 5 and 6-year-old Korea ginseng and 7, 8 and 9-year-old China ginseng, respectively. Each sample set has 20 sample. Nigrogen content was measured by electronic analysis. NIR reflectance spectra were collected over the 1100 to 2500 nm spectral region with a InfraAlyzer 500C (Bran+Luebbe, Germany) equipped with a halogen lapmp and PbS detector and data were collected every 2 nm data point intervals. The calibration models were carried out by multiple linear regression (MLR) and partial least squares (PLS) analysis using IDAS and SESAME software. Result of electronic analysis, Korean ginseng were different mean value in nitrogen content of China ginseng. Ginseng tend to generally decrease the nitrogen content according as cultivation year is over 6 years. The MLR calibration model with 8 wavelengths using IDAS software accurately predicted nitrogen contents with correlation coefficient (R) and standard error of prediction of 0.985 and 0.855%, respectively. In case of SESAME software, the MLR calibration with 9 wavelength was selected the best calibration, R and SEP were 0.972 and 0.596%, respectively. The PLSR calibration model result in 0.969 of R and 0.630 of RMSEP. This study shows the NIR spectroscopy could be applied to determine the nitrogen content in ginseng radix with high accuracy.

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A Study on The Change of NIR(Near-Infrared Reflectance) value of The Natural Sample by Landform Division (주변 자연 지형에 따른 자연시료의 NIR 반사율값 비교)

  • Lee, Hae-Jung;Kim, Mi-Ri;Ko, Jae-Hoon;Park, Yoon-Cheol
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2011.03a
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    • pp.90-90
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    • 2011
  • 스텔스 기능성 섬유의 위장은 주간의 경우, 육안 및 망원경 관측에 의해 결정되며 주변자연환경 color matching과 패턴이 핵심 스텔스 요인으로 구성되고, 가시광선 영역 스텔스로 표현할 수 있으며, 군 위장 체계에 있어 기본이 되는 기술 분야로 모든 군 위장제품에 활용되는 필수적인 기술 분야이다. 따라서 가시영역의 위장은 다양한 색상의 위장포와 포의 펀칭 등에 의한 파형특성을 부여하고 주위환경과 특성 조화를 이룸으로써 대상을 위장한다. 주요인자는 색상별 색도, 색차이다. 야간 위장은 근적외선 관측 장비의 탐지에 의해 결정되며 주변자연환경 NIR 반사율과 위장제품의 NIR 반사율 저하/제어기술이 핵심 스텔스 요인으로 구성되고, 근적외선(NIR) 영역 스텔스로 표시할 수 있으며, NIR 스텔스는 대개의 경우 기본적으로 섬유제품이 NIR 영역에서 높은 반사율을 나타내므로 NIR 반사율 저하/제어기술이 핵심이라 할 수 있다. 따라서 근적외선 영역(600~1250nm)의 적외선 반사특성을 산림지역의 반사특성과 조화시켜 위장효과를 부여한다. 위장포에서는 적외선 흡수 색소를 사용하여 적절한 반사특성을 나타나게 해야 한다. 위장용섬유가 detector의 탐지에서 벗어나려면 현재 700~1250nm의 근적외선파장영역에서 주변환경과 유사한 반사율을 지녀야한다. 이에 본 연구에서는 "숲 연구소" 및 서울대학교 "지반공학연구실"의 자문을 받아서 우리나라에서 가장 많이 존재하는 자연환경시료를 선정하여, 선정된 시료의 근적외선영역에서의 반사율을 분석하였다. 자연시료는 산간, 해안, 평야지형으로 각각 구분하여 주변 자연지형에 따른 자연시료의 근적외선영역의 반사율값을 비교하였다. 북한산에서 산간지형의 시료를 채취하였고, 해안지형의 시료는 강화도 동막해수욕장 부근, 평야지형의 시료는 인천 강화도 평야지역에서 채취하여 분석하였다. 비교분석한 지형별 자연시료의 근적외선 반사율값의 데이터베이스구축을 통하여 기존의 위장복과의 비교 적용 및 차후 개선사항 등을 검토하고자 한다.

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Development of a Portable Quality Evaluation System for Bee-honeys by Using Near Infrared Spectroscopy (근적외 분광법을 응용한 휴대용 벌꿀 품질 평가 장치 개발)

  • Choi, Chang-Hyun;Kim, Jong-Hun;Kwon, Ki-Hyun;Kim, Yong-Joo
    • Food Science and Preservation
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    • v.18 no.2
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    • pp.156-164
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    • 2011
  • This study was conducted to develop a portable quality evaluation system of bee-honey by near infrared spectroscopic technique. Two kinds of bee-honeys from acacia and polyflower sources were tested in this study. The system consists of power supply, tungsten-halogen lamp, detector, and optical fiber probe. Performance of the system was analyzed by comparing the prediction accuracy of the laboratory spectrophotometer. Total of 346 spectra was divided into a calibration set and a prediction set. The PLS (Partial Least Squares) models were developed to predict the quality parameters of bee-honeys. Reflectance spectra, moisture contents, ash, invert sugar, sucrose, F/G ratio, HMF(hydroxy methyl furfural), and $C^{12}/C^{13}$ ratio of honeys were measured. The PLS models of the laboratory spectrophotometer showed good relationships between predicted and measured quality parameters of honeys in the wavelength range of 1.100~2.200 nm. The PLS analysis of the portable quality evaluation system showed good relationships between predicted and measured quality parameters of honeys in the wavelength range of 1.100~1.300 nm and 1.400~1.700 nm. The results showed the feasibility of the portable quality evaluation system to determine the quality parameters of bee-honey in the field during harvesting.

Autofocus of Infinity-Corrected Optical Microscopes by Confocal Principle and Fiber Source Modulation Technique (공초점 원리와 광섬유 광원 변조를 이용한 무한보정 현미경 자동초점)

  • Park, Jung-Jae;Kim, Seung-Woo;Lee, Ho-Jae
    • Korean Journal of Optics and Photonics
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    • v.15 no.6
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    • pp.583-590
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    • 2004
  • The autofocus is one of the important processes in the automated vision inspection or measurements using optical microscopes, because it influences the measuring accuracy. In this paper, we used the confocal microscope configuration based on not a pinhole but a single-mode optical fiber. A single mode fiber has the functions of source and detector by applying the reciprocal scheme. As a result, we acquired a simple system configuration and easy alignment of the optical axis. Also, we embodied a fast autofocus system by acquiring the focus error signal through a source modulation technique. The source modulation technique can effectively reduce physical disturbances compared with objective lens modulation, and it is easily applicable to general optical microscopes. The focus error signal was measured with respect to the modulation amplitude, reflectance of the specimen and inclination angle of the measuring surface. The performance of the proposed autofocus system was verified through autofocusing flat mirror surface. In addition, we confirmed that source modulation rarely degrades the depth resolution by the comparison between the FWHMs of axial response curves.

Development of Tobacco Ripeness Grading Meter Using the Color Sensor (칼라센서를 이용한 담배 완숙도의 식별장치 개발)

  • 이대원;이용국
    • Journal of the Korean Society of Tobacco Science
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    • v.16 no.1
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    • pp.26-33
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    • 1994
  • A tobacco ripeness grading meter was designed and constructed using the color sensor, its performance was evaluated. A degree of ripeness grading of a leaf is very closely related to the measured tobacco leaf color. Measuring the small amount of the reflectance precisely depends on the apparatus including color sensor, light source, detector sensitivity, and geometric characteristics of appratus. To analyze and minimize the variational effects, experiments to select the proper condition were performed. Because of the combined effect mentioned above, the system has some variation on its response. Basis on the results of the experiments, prototype was developed and interfaced to a computer system. The main components of prototype included a tungsten lamp as a light source, Amorphous full color sensor with three filters, regulated D.C. power supply, OP - AMP(741 TC) for amplification, AR - B3001 board for interfacing to a computer with analog to digital conversion, and a compatible IBM PC XT computer. The experimental results of the developed ripeness tobacco leaf measurement system are summarized as following: [1] The output readings of ripeness grade meter for tobacco leaf, which is based on harvesting time, showed the apparent difference in variety of different quality. It was considered suitable that three filters(red, green, blue) in Amorphous full color sensor could be used in four different ripeness degree measurement of tobacco leaf. [2] The output readings of ripeness grade meter for tobacco leaf, which is based on government procurement, showed apparent difference in variety of different quality. Tobacco leaf varieties to stalk position are divided into tips, leaf, cutters, and primings, It is considered suitable that only red filter in the sensor could be used to classify the grade of tobacco leaf within the same kind tobacco stalk. However, the ripeness grade meter was not adequate to classify all the tobacco grades in the four different tobacco leaves.

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Development of IR Thermal Camera Detector based on Smartphone Interlocking for Hidden Camera Crime Prevention (몰래카메라 범죄방지를 위한 스마트폰 연동 기반의 IR 열카메라 탐지기 개발)

  • Kang, Young-Gil;Cho, Pil-Gu;Kim, Young-Gon
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.21 no.6
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    • pp.1-8
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    • 2021
  • The performance of hidden camera cameras is improving day by day due to miniaturization and advanced technology integration according to the speed of technological development of smartphones. As this external networking computing environment is advanced and diversified, exposure to hidden cameras in addition to general safety cameras is also increasing. On the other hand, the technology for detecting and preventing hidden cameras is not keeping up with the development and speed of these hidden cameras. Therefore, in this study, the heat of the hidden camera was detected using infrared thermal detection technology based on general image and thermal image synthesis technology, and the reflectance of each wavelength according to the difference in ambient temperature was analyzed to reduce the false positive rate.