• Title/Summary/Keyword: 공간색온도

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Face detection in compressed domain using color balancing for various illumination conditions (다양한 조명 환경에서의 실시간 사용자 검출을 위한 압축 영역에서의 색상 조절을 사용한 얼굴 검출 방법)

  • Min, Hyun-Seok;Lee, Young-Bok;Shin, Ho-Chul;Lim, Eul-Gyoon;Ro, Yong-Man
    • 한국HCI학회:학술대회논문집
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    • 2009.02a
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    • pp.140-145
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    • 2009
  • Significant attention has recently been drawn to human robot interaction system that uses face detection technology. The most conventional face detection methods have applied under pixel domain. These pixel based face detection methods require high computational power. Hence, the conventional methods do not satisfy the robot environment that requires robot to operate in a limited computing process and saving space. Also, compensating the variation of illumination is important and necessary for reliable face detection. In this paper, we propose the illumination invariant face detection that is performed under the compressed domain. The proposed method uses color balancing module to compensate illumination variation. Experiments show that the proposed face detection method can effectively increase the face detection rate under existing illumination.

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A Study on the Extraction of Correlated Color Temperature, Illuminance, Control Speed under Controllable LED Lighting in the Kitchen Space (제어가능한 부엌공간 LED조명에서의 색온도, 조도, 제어속도 추출에 관한 연구)

  • Lee, Jin-Sook;Jeong, Chan-Ung;Park, Ji-Young
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.28 no.5
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    • pp.1-14
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    • 2014
  • This study has found out appropriate scopes of correlated color temperature and illuminance value with regard to general diffused lighting and work in the kitchen. It also has presented appropriate photometric quantity control speed for behavioral change with the following results. 1)For general diffused lighting, the appropriate photometric quantity has turned out to be 4,000 to 4,500K in color temperature and illuminance value of 300 to 400lx. And 300lx at 4,500K has proven to be the most comfortable, behavior-appropriate, and preferred pair. 2)As far as appropriate photometric quantity for work is concerned, color temperature of 4,000 to 5,000K and illuminance value of 600 to 800lx are appropriate, while 700lx at 4,500 to 5,000K are the most comfortable, behavior-appropriate, and preferred set. 3)As for appropriate photometric quantity control speed in behavioral change, 3 to 5 seconds has proven the most comfortable, appropriate, and preferred for behavioral change from entry to general areas and 1 to 3 seconds for change from general to work.

Mercury Free Flat Discharge Lamps for LCD Backlighting (LCD 배면광을 위한 무수은 평면방전램프)

  • Shiga, Tomokazu
    • The Proceedings of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.15 no.2
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    • pp.31-38
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    • 2001
  • LCD는 비발광형 소자이므로 배면광이 필요하다. 현재의 LCD 배면광용 냉음극 형광램프는 전기-광학적 특성을 좋게 하기 위하여 수은방전을 사용한다. 그러나 수은의 이용은 외부 온도에 따라 특성이 변하는 결점과 환경 문제가 있다. 이 결점을 보완하기 위하여 원통방전형, 미세방전형 그리고 평면방전형 등 세가지 방식의 무수은 램프가 개발되어 왔다. 원통 방전형 무수은 램프는 수은 대신 Xe을 사용한다. Xe 방전이 수축되는 것을 막기 위하여 한쪽 전극은 외벽에 코일형태로 감아서 사용한다. 그리고 코일형태의 전극의 권선 간격을 조절하여 균일한 방전을 얻는다. 이 형태는 무수은 냉음극 형광램프의 두배의 광속을 얻을 수가 있다. 미세방전형 무수은 램프는 두 개의 절연체로 절연되 금속 전극사이의 방전공간에 수많은 미세방전을 일으켜 발광시킨다. 이 방식은 대향 방전구조와 면 방전구조의 두가지가 있다. 이 방식은 전극이 유전체로 둘러쌓여 있으므로 수명이 높다. 새로운 평면방전형 무수은 램프를 개발하였다. 이 램프는 두 개의 유리평판 사이에 방전공간을 만들고 한쪽 유리면의 양쪽 가장자리에 두 개의 전극을 설치하여 면방전을 유도한다. 양쪽 유리면에는 삼원색 형광체를 도포하고 Xe을 봉입하여 Xe의 진공자외선으로 형광체를 발광시킨다. 이 램프는 전극이 유전체로 덮혀있어 수명이 길다. 실험결과 기체압력 6.7[kPa], 구동전압 1,130[V]에서 최대휘도 9,200[$cd/m^2$], 광효율 20.4[lm/W]을 었었고, 기체 압력 2.7[kPa] 구동전압 1,120[V]에서 최대효율 34.1[lm/W], 휘도 1,080[$cd/m^2$]을 얻었다. 현재 무수은 램프는 수은 램프에 비해서 광학적 특성이 좋지 못하다. 무수은 램프에서 좋은 광학적 특성을 얻기 위해 가장 중요한 것은 수축이 없이 방전을 확산시키는 것이다. 이를 위해서 램프구조와 구동법을 최적화하는 것이 필요하다. 또한 기체압력을 높임으로서 Xe의 여기복사를 얻을 수 있었다.

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Effects of Correlated Color Temperature of LED Light Sources and a Flourescent Light Source on Visual Performance (LED광원과 형광광원의 상관색온도가 시작업 성능에 미치는 영향)

  • Baik, Seung-Heon;Jeong, In-Young;Shin, Hwa-Young;Kim, Jeong-Tai
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.23 no.1
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    • pp.18-26
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    • 2009
  • Recently, from an environmental conservative point of view, the need of high-efficiency lighting system, using LED(Light Emitting Diode) light sources have been increased. However, applied LED light sources without regard to its color and pattern provide visual discomfort to occupant. The objective of this study is not only to evaluate the performance of task work under different correlated color temperature condition, but also furnish the preliminary data as concerning its purpose and user of inner space. For the purpose of this study, two types of LED light sources and a fluorescent light source were selected. Thirty undergraduate students served as the participants. Two different task work sheets were conducted to evaluate the accuracy and duration of time. Results from subjective performance, task work of error modification showed that LED light sources were 2.5[%] higher in accuracy with 17.1[%] lower duration than a fluorescent light source. In the case of reading task work, It is presented 20.6[%] decrease with the LED light sources comparison with a fluorescent light source.

Reference white setting based on brightness of CPT and resolution (수상관의 밝기 및 해상도를 고려한 기준 백색 설정)

  • 최덕규;김주동;권기룡;안상호;이건일;송규익
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.22 no.2
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    • pp.334-343
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    • 1997
  • Reference white in color television receiver can be achieved by adjusting the RGB gun current ratio and it is necessary to provide additional gain ratio adjustment for the RGB video signal. Generally, the gun current density profile has a gaussian distribution and the gain-bandwidth product of RGB channel amplifieris constant. Therefore brightness and spatial resolution are changed with variations in reference white of receiver. In this paper, the effect of RGB gun current and channel gain ratios on brightness and resolution of CPT is analyzed. Brightness is increased with the color temperature of referenc white because of Helmholtz-kohlrausch effect. The change in ligh output is more abrupt and spatial resolution is improved with unity current ratio. For more bright and improved ressolution we also present the range of color temperature of reference white for P22 phosphors.

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가시광 투과율 향상을 위한 2차원적 벌집구조를 갖는 이산화 바나듐(VO2) 박막 제작

  • Kim, Dong In;Yu, Jung-Hoon;Nam, Sang-Hun;Seo, Hyeon Jin;Hwang, Ki-Hwan;Kim, Jee Yun;Joo, Yong Tae;Boo, Jin-Hyo
    • Proceedings of the Korean Vacuum Society Conference
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    • 2015.08a
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    • pp.256-256
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    • 2015
  • 이산화 바나듐 ($VO_2$)은 340 K 임계온도를 기점으로 금속-절연체 상전이를 통해 전기적, 광학적 특성이 가역적으로 변하는 물질로 잘 알려져 있다. 그러나 낮은 가시광 투과율과 비선호적인 색상(황갈색)으로 인해 열변색 스마트 창호응용과 관련하여 해결해야 할 문제로 남아있다. 본 연구에서는 상기 문제를 해결하고자 고분자 나노 구 템플릿을 응용하여 2차원의 벌집구조를 갖는 $VO_2$ 박막을 졸 겔 방법을 통해 제작하였으며 가시광 투과율 향상을 유도하였다. 나노 구의 지름과 코팅조건에 따라 구조변화를 유도하였으며 FE-SEM과 AFM을 통해 박막의 구조적 변화를 측정하였다. 결과로부터 나노 구의 역상모양을 갖는 박막이 형성 되었으며 직경에 따라 패턴 간격이 확연하게 변화되었음을 확인 하였다. 나노 구가 위치하고 있던 자리로부터 빈 공간형성을 유도할 수 있었으며 이는 가시광 투과율향상에 직접적 영향을 주었다. 또한 상기 패턴화된 $VO_2$ 박막은 광학 스위칭 효율을 유지하면서 주기적 패턴으로부터 시각적으로 광결정유도를 통한 미적 시너지를 보였며 본 연구로부터 $VO_2$기반 스마트 창호 응용에 많은 기여가 기대된다.

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Realization of the national standard of candela traceable to the absolute cryogenic radiometer at KRISS (극저온 절대복사계에 소급한 칸델라 국가표준 실현)

  • Park, Seung-Nam;Kim, Yong-Wan;Lee, Dong-Hoon
    • Korean Journal of Optics and Photonics
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    • v.15 no.5
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    • pp.443-448
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    • 2004
  • We realized the national standard of the candela, one of the SI units, by using two photometers with the spectral responsivity measured in reference to the absolute cryogenic radiometer. The external apertures of the photometers were fabricated using a diamond turning machine, and measured in terms of area with uncertainty of 0.05 %(k = 1). The candela is realized using a 1 kW FEL lamp and the characterized photometers on an optical bench. The uncertainty is budgeted to be 0.25 %(k = 1) considering the uncertainty of the spectral responsivity and the response uniformity of the detectors, the area of the external apertures, the color temperature of the lamp, and the positioning reproducibility of the photometers and the lamp. We verified the realized scale by comparing with the scale of National Institute of Standards and Technology, USA. They coincided with each other within 0.1%.

Improvement of Mid-Wave Infrared Image Visibility Using Edge Information of KOMPSAT-3A Panchromatic Image (KOMPSAT-3A 전정색 영상의 윤곽 정보를 이용한 중적외선 영상 시인성 개선)

  • Jinmin Lee;Taeheon Kim;Hanul Kim;Hongtak Lee;Youkyung Han
    • Korean Journal of Remote Sensing
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    • v.39 no.6_1
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    • pp.1283-1297
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    • 2023
  • Mid-wave infrared (MWIR) imagery, due to its ability to capture the temperature of land cover and objects, serves as a crucial data source in various fields including environmental monitoring and defense. The KOMPSAT-3A satellite acquires MWIR imagery with high spatial resolution compared to other satellites. However, the limited spatial resolution of MWIR imagery, in comparison to electro-optical (EO) imagery, constrains the optimal utilization of the KOMPSAT-3A data. This study aims to create a highly visible MWIR fusion image by leveraging the edge information from the KOMPSAT-3A panchromatic (PAN) image. Preprocessing is implemented to mitigate the relative geometric errors between the PAN and MWIR images. Subsequently, we employ a pre-trained pixel difference network (PiDiNet), a deep learning-based edge information extraction technique, to extract the boundaries of objects from the preprocessed PAN images. The MWIR fusion imagery is then generated by emphasizing the brightness value corresponding to the edge information of the PAN image. To evaluate the proposed method, the MWIR fusion images were generated in three different sites. As a result, the boundaries of terrain and objects in the MWIR fusion images were emphasized to provide detailed thermal information of the interest area. Especially, the MWIR fusion image provided the thermal information of objects such as airplanes and ships which are hard to detect in the original MWIR images. This study demonstrated that the proposed method could generate a single image that combines visible details from an EO image and thermal information from an MWIR image, which contributes to increasing the usage of MWIR imagery.

An Efficient Smart Indoor Emotional Lighting Control System based on Android Platform using Biological Signal (생체신호를 이용한 안드로이드 플랫폼 기반의 효율적인 스마트 실내 감성조명 제어 시스템)

  • Yun, Su-Jeong;Hong, Sung-IL;Lin, Chi-Ho
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.16 no.1
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    • pp.199-207
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    • 2016
  • In this paper, we propose efficient smart indoor emotional lighting control system based on android platform using the biological signal. The proposed smart indoor smart emotional lighting control system were configured as the biological signal measurement device and removable smart wall pad, lighting driver, luminaire. The control system was extracts the emotional language by measured the biological signal, and it was transmitted a control signal to each lighting driver using a bluetooth in the wall pad. The lighting driver were designed to control the lighting device through an expansion board by collected control signal and the illuminance information the surrounding. In this case, the wall pad can be selecting of manual control and the bio signal mode by that indoor emotional lighting control algorithms, and it was implemented the control program that possible to partial control by selecting the wanted light. Experiment results of the proposed smart indoor emotional lighting control system, it were possible to the optional control about the luminaire of required area, and the manual control by to adjustable of color temperature with that the efficiently adjustable of lighting by to biological signal and emotional language. Therefore, were possible to effective control for improvement of concentration and business capability of indoor space business conduct by controlling the color and brightness that is appropriate for your situation. And, was reduced power consumption and dimmer voltage, lighting-current than the existing-emotional lighting control system.

Characteristics of Remote Sensors on KOMPSAT-I (다목적 실용위성 1호 탑재 센서의 특성)

  • 조영민;백홍렬
    • Korean Journal of Remote Sensing
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    • v.12 no.1
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    • pp.1-16
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    • 1996
  • Korea Aerospace Research Institute(KARI) is developing a Korea Multi-Purpose Satellite I(KOMPSAT-I) which accommodates Electro-Optical Camera(EOC), Ocean Color Imager(OCI), Space Physics Sensor(SPS) for cartography, ocean color monitoring, and space environment monitoring respectively. The satellite has the weight of about 500 kg and is operated on the sun synchronized orbit with the altitude of 685km, the orbit period of 98 minutes, and the orbit revisit time of 28days. The satellite will be launched in the third quarter of 1999 and its lifetime is more than 3 years. EOC has cartography mission to provide images for the production of scale maps, including digital elevation models, of Korea from a remote earth view in the KOMPSAT orbit. EOC collects panchromatic imagery with the ground sample distance(GSD) of 6.6m and the swath width of 15km at nadir through the visible spectral band of 510-730 nm. EOC scans the ground track of 800km per orbit by push-broom and body pointed method. OCI mission is worldwide ocean color monitoring for the study of biological oceanography. OCI is a multispectral imager generating 6 color ocean images with and <1km GSD by whisk-broom scanning method. OCI is designed to provide on-orbit spectral band selectability in the spectral range from 400nm to 900nm. The color images are collected through 6 primary spectral bands centered at 443, 490, 510, 555, 670, 865nm or 6 spectral bands selected in the spectral range via ground commands after launch. SPS consists of High Energy Particle Detector(HEPD) and Ionosphere Measurement Sensor(IMS). HEPD has mission to characterize the low altitude high energy particle environment and to study the effects of radiation environment on microelectronics. IMS measures densities and temperature of electrons in the ionosphere and monitors the ionospheric irregularities in KOMPSAT orbit.