• 제목/요약/키워드: Color line Sensor

검색결과 29건 처리시간 0.027초

On-Line Real Time Soil Sensor

  • Shibusawa S.
    • Agricultural and Biosystems Engineering
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    • 제4권2호
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    • pp.45-49
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    • 2003
  • Achievements in the real-time soil spectro-photometer are: an improved soil penetrator to ensure a uniform soil surface under high speed conditions, real-time collecting of underground soil reflectance, getting underground soil color images, use of a RTK-GPS, and all units are arranged for compactness. With the soil spectrophotometer, field experiments were conducted in a 0.5 ha paddy field. With the original reflectance, averaging and multiple scatter correction, Kubelka-Munk (KM) transformation as soil absorption, its 1st and 2nd derivatives were calculated. When the spectra was highly correlated with the soil parameters, stepwise regression analysis was conducted. Results include the best prediction models for moisture, soil organic matter (SOM), nitrate nitrogen ($NO_3-N$), pH and electric conductivity (EC), and soil maps obtained by block kriging analysis.

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레이저 산란 현상을 이용한 피부혈류 화상화 시스템의 개발 (Development of Laser Speckle Flowgraphy System for Monitoring Blood Flow in Skin Tissue)

  • 이민철;등거인
    • 대한의용생체공학회:의공학회지
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    • 제28권3호
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    • pp.392-396
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    • 2007
  • In this paper, we develop a new system to visualize the blood flow map in skin tissue, using the technique of Laser Speckle Flowgraphy (LSFG). The measuring unit consists of the laser diode, imaging system, line sensor, scanning mirror, and one-board microcomputer. The speckle signal is analyzed and sent to a PC, where the blood flow in a tissue area of $14mm{\times}26 mm$ is evaluated and displayed in a 2-D color map. It is demonstrated that the new LSFG instrument is useful to evaluate the degree of allergic reaction in patch test.

지능형 알고리즘 기반 RGBW Dimming control LED 감성조명 시스템 개발 (Development of RGBW Dimming Control Sensitivity Lighting System based on the Intelligence Algorithm)

  • 오성권;임승준;마창민;김진율
    • 한국지능시스템학회논문지
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    • 제21권3호
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    • pp.359-364
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    • 2011
  • 본 연구는 감성 공학과 인공 지능 알고리즘의 하나인 퍼지 추론을 이용하여 LED 색온도 제어시스템의 체계적인 제어를 위한 퍼지 추론 기반 LED 감성 조명 시스템을 개발하고자 한다. 감성공학 영역에서 하나의 형용사 언어로 표현되는 감성과 색상과의 관계를 고려하여 감성언어를 결정하고, 인간의 뇌에서 나오는 뇌파의 파장과 색온도와의 관계를 고려하여 수업과목의 종류를 결정한다. 결정된 감성언어와 수업과목의 종류를 이용하여 RGB LED의 색온도를 조정한다. 더불어 GPS(Global Positioning System)로 위도와 경도의 정보를 이용하여 실시간으로 태양의 고도를 산출하고, 온도 및 습도센서의 정보를 이용하여 불쾌지수를 산출한다. 결과로 나온 태양의 고도와 불쾌지수의 변화에 따라 LED 조명시스템의 White LED의 조도와 RGBLED의 색온도를 조정한다. 개발된 LED 감성조명 시스템은 상황에 알맞은 분위기를 연출함으로써 학습능력과 업무능력의 효율 향상 등을 이끌어 낼 수 있을 것이다.

다중 센서 데이터의 분석을 위한 가시화 시스템의 구현 (Implementation of Visualization System for Multi-sensor Data Analysis)

  • 권혁돈;구상옥;정승대;김복동;정순기
    • 한국정보처리학회:학술대회논문집
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    • 한국정보처리학회 2006년도 춘계학술발표대회
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    • pp.415-418
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    • 2006
  • 다양한 데이터에 대해 정확한 분석이 요구되는 분야가 증가하면서, 데이터를 효율적으로 가시화하는 방법에 대한 요구도 증가하고 있다. 분석에 효율적인 가시화란 데이터의 특성을 잘 표현함으로써 분석가가 데이터를 직관적으로 이해할 수 있도록 도와주는 것을 말한다. 이를 통해 데이터를 분석하는 시간을 줄이고 정확한 결과를 얻는데 도움을 준다. 본 논문에서는 가스 배관을 검사하기 위한 Geometry 피그(PIG:Pipeline Inspection Gauge)와 MFL 피그로부터 얻어지는 데이터를 다양한 방법으로 가시화하고 분석에 효과적인 가시화와 시스템의 구현에 대해 다룬다. 각 피그의 다중 센서를 통해 얻어온 데이터를 Line graph, Pseudo Color Image, 3D Surface, Polar View, 3D Pipeline View와 같은 다양한 방법으로 가시화하고 view들 간의 동기화 및 사용자 지정 view 배치를 통해 빠르고 정확한 분석을 가능하게 하는 여러 가지 방법에 대해 설명한다.

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살모넬라 식중독균 신속 검출용 간이 진단키트 (Rapid Detection Kit for Salmonella typhimurium)

  • 김기영;양길모;박샛별;김용훈;이강진;손재용;김혁주;이새롬
    • Journal of Biosystems Engineering
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    • 제36권2호
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    • pp.140-146
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    • 2011
  • This study was performed to develop a rapid test kit for pathogenic Salmonella in various samples. The rapid detection kit has been fabricated based on nitrocellulose lateral-flow strip. Colloidal gold and biotin conjugated Salmonella antibodies were used as a tag and a receptor, respectively. Manually spotted Salmonella antibody and Neutravidin on nitrocellulose membrane were used as test and control lines, respectively. Feasibility of the rapid kit to detect Salmonella typhimurium in samples were evaluated. The intensity of the color of the test line started to increase with the samples in which higher concentration of the cells were contained. The sensitivity of the sensor was $10^6$ cfu/mL Salmonella spiked in PBS. Also, the rapid test kit could detect $10^6$ cfu/mL of Salmonella in chicken meat extract.

황색포도상구균 신속 검출용 간이 진단키트 (Rapid Detection Kit for Staphylococcus aureus)

  • 김기영;박샛별;문지혜;이상대;이새롬;장윤정
    • 농업과학연구
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    • 제40권2호
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    • pp.139-146
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    • 2013
  • This study was performed to develop a rapid test kit for pathogenic Staphylococcus in various samples. The rapid detection kit has been fabricated based on nitrocellulose lateral-flow strip. Colloidal gold and Staphylococcus antibodies were used as a tag and a receptor, respectively. Manually spotted Staphylococcus antibody and anti-mouse antibody on the surface of nitrocellulose membrane were used as test and control lines, respectively. Feasibility of the rapid kit to detect Staphylococcus aureus in samples were evaluated. The intensity of the color of the test line started to increase with the samples in which higher concentration of the cells were contained. The sensitivity of the sensor was $10^6$ cfu/mL Staphylococcus spiked in PBS. Also, the rapid test kit could detect $10^5$ cfu/mL of Staphylococcus in chicken meat extract.

안드로이드 기반의 도로 밝기 측정 어플리케이션 구현 (A Road Luminance Measurement Application based on Android)

  • 최영환;김홍래;홍민
    • 인터넷정보학회논문지
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    • 제16권2호
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    • pp.49-55
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    • 2015
  • 최근 5년간의 주 야간별 교통사고 통계에 따르면 대부분의 자동차 교통사고는 주간보다 야간에 더 많이 발생했다. 교통사고는 다양한 원인으로 발생하게 되는데 그 중 중요한 요소는 조명 미설치 또는 조명 위치의 부적합으로 운전자의 시야 혼란을 야기하여 교통사고를 유발하게 된다. 본 논문은 부적절한 도로 조명 시설 위치와 미설치 구역을 파악하고 관련 정보들을 데이터베이스화 하였다. 이를 위해 운전자의 위치 정보, 주행 정보, 도로 밝기 정보를 스마트폰을 이용하여 실시간으로 데이터베이스 서버에 저장하는 도로 밝기 측정 어플리케이션을 설계 및 구현하였다. 본 어플리케이션은 안드로이드 NDK을 이용하여 Native C/C++ 환경에서 구현되었으며, 이에 따라 자바나 다른 언어로 작성된 어플리케이션 보다 연산속도를 향상시켰다. 도로 밝기를 측정하기 위하여 카메라 영상인 RGB 색 공간의 영상을 YCbCr 색 공간의 영상으로 변환하여 휘도를 측정한다. 이를 위해 먼저 차선을 검출하고 도로 밝기 검출 영역의 휘도 값을 계산하여 데이터베이스에 저장한다. 또한 스마트폰의 카메라를 이용하여 실시간으로 도로의 영상을 입력 받고 도로의 차선부분에 대한 관심영역을 지정하여 연산 속도를 향상시켰다. 관심영역의 영상은 Grayscale 영상으로 변환하고 Canny 에지 검출기를 사용하여 외곽선을 추출하고 Hough line transform을 적용하여 차선의 후보군을 선별한다. 선별된 후보 차선의 기울기를 계산하여 양쪽의 차선을 선정한다. 양쪽 차선이 검출되면 차선의 교차점으로부터 아래로 20픽셀의 높이를 가진 삼각형을 도로 밝기 측정범위로 설정한다. 삼각형 부분의 모든 픽셀에 대한 R, G, B값을 추출하여 Y값을 계산하고 픽셀 밝기 값의 평균을 0부터 100사이의 값으로 계산하여 검은색부터 초록색으로 도로의 밝기를 표현하였다. 계산된 60m 전방의 도로 밝기 값은 스마트폰의 GPS 센서를 통해 측정된 운전자의 주행 정보와 위치 정보를 획득하여 10분 간격으로 무선통신을 통해 데이터베이스 서버에 저장하였다. 향후 수집된 도로 밝기 정보들은 스마트폰 어플리케이션이나 차량 내비게이션을 통해 운전자들에게 조심 운전을 경고하거나 효율적인 도로 조명 관리를 위한 개보수 계획에 반영될 수 있을 것으로 기대된다.

유기 발광 소자 디스플레이를 위한 적외선 램프 소스를 활용한 열 전사 픽셀 패터닝 (Thermal Transfer Pixel Patterning by Using an Infrared Lamp Source for Organic LED Display)

  • 배형우;장영찬;안명찬;박경태;이동구
    • 센서학회지
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    • 제29권1호
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    • pp.27-32
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    • 2020
  • This study proposes a pixel-patterning method for organic light-emitting diodes (OLEDs) based on thermal transfer. An infrared lamp was introduced as a heat source, and glass type donor element, which absorbs infrared and generates heat and then transfers the organic layer to the substrate, was designed to selectively sublimate the organic material. A 200 nm-thick layer of molybdenum (Mo) was used as the lightto-heat conversion (LTHC) layer, and a 300 nm-thick layer of patterned silicon dioxide (SiO2), featuring a low heat-transfer coefficient, was formed on top of the LTHC layer to selectively block heat transfer. To prevent the thermal oxidation and diffusion of the LTHC material, a 100 nm-thick layer of silicon nitride (SiNx) was coated on the material. The fabricated donor glass exhibited appropriate temperature-increment property until 249 ℃, which is enough to evaporate the organic materials. The alpha-step thickness profiler and X-ray reflection (XRR) analysis revealed that the thickness of the transferred film decreased with increase in film density. In the patterning test, we achieved a 100 ㎛-long line and dot pattern with a high transfer accuracy and a mean deviation of ± 4.49 ㎛. By using the thermal-transfer process, we also fabricated a red phosphorescent device to confirm that the emissive layer was transferred well without the separation of the host and the dopant owing to a difference in their evaporation temperatures. Consequently, its efficiency suffered a minor decline owing to the oxidation of the material caused by the poor vacuum pressure of the process chamber; however, it exhibited an identical color property.

Modern Paper Quality Control

  • Olavi Komppa
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 2000년도 제26회 펄프종이기술 국제세미나
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    • pp.16-23
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    • 2000
  • The increasing functional needs of top-quality printing papers and packaging paperboards, and especially the rapid developments in electronic printing processes and various computer printers during past few years, set new targets and requirements for modern paper quality. Most of these paper grades of today have relatively high filler content, are moderately or heavily calendered , and have many coating layers for the best appearance and performance. In practice, this means that many of the traditional quality assurance methods, mostly designed to measure papers made of pure. native pulp only, can not reliably (or at all) be used to analyze or rank the quality of modern papers. Hence, introduction of new measurement techniques is necessary to assure and further develop the paper quality today and in the future. Paper formation , i.e. small scale (millimeter scale) variation of basis weight, is the most important quality parameter of paper-making due to its influence on practically all the other quality properties of paper. The ideal paper would be completely uniform so that the basis weight of each small point (area) measured would be the same. In practice, of course, this is not possible because there always exists relatively large local variations in paper. However, these small scale basis weight variations are the major reason for many other quality problems, including calender blacking uneven coating result, uneven printing result, etc. The traditionally used visual inspection or optical measurement of the paper does not give us a reliable understanding of the material variations in the paper because in modern paper making process the optical behavior of paper is strongly affected by using e.g. fillers, dye or coating colors. Futhermore, the opacity (optical density) of the paper is changed at different process stages like wet pressing and calendering. The greatest advantage of using beta transmission method to measure paper formation is that it can be very reliably calibrated to measure true basis weight variation of all kinds of paper and board, independently on sample basis weight or paper grade. This gives us the possibility to measure, compare and judge papers made of different raw materials, different color, or even to measure heavily calendered, coated or printed papers. Scientific research of paper physics has shown that the orientation of the top layer (paper surface) fibers of the sheet paly the key role in paper curling and cockling , causing the typical practical problems (paper jam) with modern fax and copy machines, electronic printing , etc. On the other hand, the fiber orientation at the surface and middle layer of the sheet controls the bending stiffness of paperboard . Therefore, a reliable measurement of paper surface fiber orientation gives us a magnificent tool to investigate and predict paper curling and coclking tendency, and provides the necessary information to finetune, the manufacturing process for optimum quality. many papers, especially heavily calendered and coated grades, do resist liquid and gas penetration very much, bing beyond the measurement range of the traditional instruments or resulting invonveniently long measuring time per sample . The increased surface hardness and use of filler minerals and mechanical pulp make a reliable, nonleaking sample contact to the measurement head a challenge of its own. Paper surface coating causes, as expected, a layer which has completely different permeability characteristics compared to the other layer of the sheet. The latest developments in sensor technologies have made it possible to reliably measure gas flow in well controlled conditions, allowing us to investigate the gas penetration of open structures, such as cigarette paper, tissue or sack paper, and in the low permeability range analyze even fully greaseproof papers, silicon papers, heavily coated papers and boards or even detect defects in barrier coatings ! Even nitrogen or helium may be used as the gas, giving us completely new possibilities to rank the products or to find correlation to critical process or converting parameters. All the modern paper machines include many on-line measuring instruments which are used to give the necessary information for automatic process control systems. hence, the reliability of this information obtained from different sensors is vital for good optimizing and process stability. If any of these on-line sensors do not operate perfectly ass planned (having even small measurement error or malfunction ), the process control will set the machine to operate away from the optimum , resulting loss of profit or eventual problems in quality or runnability. To assure optimum operation of the paper machines, a novel quality assurance policy for the on-line measurements has been developed, including control procedures utilizing traceable, accredited standards for the best reliability and performance.