• 제목/요약/키워드: spectral irradiance

검색결과 48건 처리시간 0.023초

Measurement of Solar Cell Using LED-based Differential Spectral Responsivity Comparator under High Background Irradiance

  • Zaid, Ghufron;Park, Seong-Chong;Lee, Dong-Hoon;Park, Seung-Nam
    • 한국광학회:학술대회논문집
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    • 한국광학회 2009년도 동계학술발표회 논문집
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    • pp.293-294
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    • 2009
  • The spectral responsivity of solar cells has been measured under high background irradiance using an LED-based differential spectral responsivity Comparator (DSR-C). The comparator developed is fully automated and has some advantages: It does not need a chopper to modulate the light. Unlike the conventional method, it does not require a monochromator to select wavelength. It covers a wavelength range up to 1200 nm. The wavelength range of the comparator is limited by the spectral power distribution of the LEDs and the spectral responsivity of the standard detector. An active temperature control was utilized to meet the specified standard conditions of solar cell test. This work shows the effect of different levels of background irradiance on the spectral responsivity and the importance of same background irradiance for solar cell test as specified by the corresponding standard.

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분광복사조도 측정 장치 개발 (Development of Spectral Irradiance Measurement System)

  • 서정철
    • 조명전기설비학회논문지
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    • 제18권5호
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    • pp.48-53
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    • 2004
  • 광원의 분광복사조도를 250∼1600[nm] 파장 영역에서 정확하게 측정하기 위한 분광복사조도 측정 장치를 개발하였다. 분광복사조도 측정 장치는 광원 장치, 광학계, 분광장치, 광검출장치, 신호 처리 장치 등으로 이루어져 있다. 광검출 장치는 PMT, Si, InGaAs 및 IR enhanced InGaAs 광검출기를 이용함으로써 자외선, 가시광선, 적외선을 포함하는 넓은 파장 범위에서 광원의 스펙트럼을 측정할 수 있다. 개발된 측정 장치를 이용하여 1[kW] quartz-halogen 텅스텐 전구의 분광복사조도를 측정하여 비교하였는데, 측정 결과와 NIST에서 측정된 결과와는 차이는 450∼700[nm] 파장 영역에서 3[%] 이하이며, 700∼1600[m] 파장영역에서는 3.5[%] 이하이며, 250∼400[nm] 파장영역에서는 5[%] 이하로 측정되었다.

태양, 달, 위성의 위치를 이용한 달의 방사조도 계산 (The Moon's Spectral Irradiance Computation using Relative Positions between the Sun, Moon, and the Satellite)

  • 서석배;송영주
    • 항공우주기술
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    • 제12권1호
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    • pp.152-162
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    • 2013
  • 달의 방사조도는 위성 가시채널 검출기의 성능을 감시하기 위해서 사용된다. 본 논문에서는 천리안위성 FDS (Flight Dynamics Subsystem)에서 생성한 태양, 달, 위성의 위치 정보를 이용하여 달의 방사조도를 계산하는 방법 및 결과를 설명한다. 계산 결과는 천리안위성 기상탑재체 가시채널 검출기의 성능저하를 검출하고 보상하기 위한 알고리즘에 적용되었다.

복수 조합에 의한 고휘도 발광 다이오드의 분광분포와 수중투과특성 (Spectral Irradiance and Underwater Transmission Characteristics of a Combined High-Luminance Light-Emitting Diodes as the Light Source for Fishing Lamps)

  • 최석진
    • 한국수산과학회지
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    • 제42권6호
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    • pp.703-710
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    • 2009
  • The spectral irradiance and underwater transmission characteristics of a combined high-luminance light-emitting diode (LED) lights have been studied to evaluate suitable light sources for fishing lamps of the next generation. The wavelengths at which the irradiance was maximum were changed from 473, 501, 525, and 465 nm for blue, peacock blue, green, and white LED light to 475, 504 and 528 nm for [$F_{WB}$], [$F_{PB}$] and [$F_{GB}$] combined LED lights, respectively. If the irradiance characteristics at 400-700 nm wavelengths are set as 100%, the irradiance rates at 450-499 nm and 500-549 nm were decreased from 82.4% and 56% for blue, peacock blue LED light to 60.0%, 38.5% for [$F_{WB}$], [$F_{WP}$] combined LED lights. The underwater transmission characteristics of the combined LED lights were superior in the order [$F_{WB}$], [$F_{BP}$], [$F_{GB}$] in optical water type I; [$F_{WB}$], [$F_{PB}$], [$F_{GP}$] in optical water type II-III; and [$F_{GP}$], [$F_{WP}$], [$F_{PB}$] in optical water type 1. Setting the 10m depth underwater transmission characteristics of the combined LED lights in optical water type I at 100%, the transmission of water types II, III and 1 drops to 29.5%, 8.0% and 2.2%. Based on the distribution of spectral irradiance and underwater transmission characteristics calculated in optical water types II-III, where was the jigging ground for fishing lamps, the [$F_{WB}]$ and [$F_{GP}$] combined LED lights can be used as a suitable light sources for fishing lamps of the next generation.

수은-할로겐 램프 조합방식 삼파장 솔라뱅크 개발에 관한 연구 (A Study on the Development of Three Wavelength Solar Bank By Mercury-Halogen Lamps Combination Method)

  • 이재명;백상화;박소진
    • 공업화학
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    • 제10권8호
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    • pp.1147-1154
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    • 1999
  • 솔라 시뮬레이터의 핵심이라 말할 수 있는 삼파장 솔라뱅크를 산업용으로 사용화된 수은등과 할로겐 램프를 조합하여 개발하였다. 이 솔라뱅크는 하절기 태양 빛의 최대 복사조도값인 $1120W/m^2$과 각 파장영역에서의 복사조도량 및 조사면적에 대한 복사조도의 ${\pm}10%$의 균일도 3가지를 동시에 만족하도록 고안되어졌다. 분광 복사조도의 측정을 위한 표준을 정하는 방법은 분광 복사휘도를 이용하였고, 측정된 분광 복사조도값을 토대로 솔라뱅크의 방향성, 입사거리, 램프간의 간격, 램프조합, 랩프개수 등을 고려하여 완전한 삼파장 솔라뱅크를 구현하였다. 삼파장 솔라뱅크의 성능 검증을 위하여 색도실험과 열전이실험을 수행하였으며, 실험결과 삼파장 솔라뱅크가 산업용 적외선 램프뱅크보다 색차와 열전이현상의 견지에서 더 우수함을 알 수 있었다.

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STANDARIZING THE EXTRATERRESTRIAL SOLAR IRRADIANCE SPECTRUM FOR CAL/VAL OF GEOSTATIONARY OCEAN COLOR IMAGER (GOCI)

  • Shanmugam, Palanisamy;Ahn, Yu-Hwan
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2006년도 Proceedings of ISRS 2006 PORSEC Volume I
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    • pp.86-89
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    • 2006
  • Ocean color remote sensing community currently uses the different solar irradiance spectra covering the visible and near-infrared in the calibration/validation and deriving products of ocean color instruments. These spectra derived from single and / or multiple measurements sets or models have significant discrepancies, primarily due to variation of the solar activity and uncertainties in the measurements from various instruments and their different calibration standards. Thus, it is prudent to examine model-to-model differences and select a standard reference spectrum that can be adopted in the future calibration and validation processes, particularly of the first Geostationary Ocean Color Imager (GOCI) onboard its Communication Ocean and Meterological Satellite (COMS) planned to be launched in 2008. From an exhaustive survey that reveals a variety of solar spectra in the literature, only eight spectra are considered here seeing as reference in many remote sensing applications. Several criteria are designed to define the reference spectrum: i.e., minimum spectral range of 350-1200nm, based completely or mostly on direct measurements, possible update of data and less errors. A careful analysis of these spectra reveals that the Thuillier 2004 spectrum seems to be very identical compared to other spectra, primarily because it represents very high spectral resolution and the current state of the art in solar irradiance spectra of exceptionally low uncertainty ${\sim}0.1%.$ This study also suggests use of the Gueymard 2004 spectrum as an alternative for applications of multispectral/multipurpose satellite sensors covering the terrestrial regions of interest, where it provides spectral converge beyond 2400nm of the Thuillier 2004 spectrum. Since the solar-activity induced spectral variation is about less than 0.1% and a large portion of this variability occurs particularly in the ultraviolet portion of the electromagnetic spectrum that is the region of less interest for the ocean color community, we disregard considering this variability in the analysis of solar irradiance spectra, although determine the solar constant 1366.1 $Wm^{-2}$ to be proposed for an improved approximation of the extraterrestrial solar spectrum in the visible and NIR region.

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식물묘공장의 근접조명용 인공광원으로서 형광등의 광강도 및 분광 특성 (Light Intensity and Spectral Characteristics of Fluorescent Lamps as Artificial Light Source for Close illumination in Transplant Production Factory)

  • 김용현;이종호
    • Journal of Biosystems Engineering
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    • 제23권6호
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    • pp.591-598
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    • 1998
  • Light intensity and spectral characteristics of different types of fluorescent lamps were tested to investigate their possibility as the artificial lighting sources for the close illumination applied in the transplant production factory. Photosynthetic photon flux densitiy(PPF), illuminance and irradiance for all lamps decreased logarithmically with an increase of the vertical distance from the lighting source. The fluorescent lamp specially designed plant growth (PG lamp) showed a maximum spectral irradiance at the wavelength of 660nm. However, it showed lower irradiance than that of a standard fluorescent lamp at the range of wavelength between 500 and 600nm. On the other hand, PG lamp showed higher PPF and lower illuminance than those of the standard fluorescent lamp. The maximum peak of spectral characteristics for both of the single and twin three-bind fluorescent lamps was shorn at the wavelength of 545m and the next peaks were shown at the wavelength of 610nm and 435nm, respectively. Since the red fluorescent lamp has a narrower peak at the wavelength of 660nm, it may be useful for the supplementary red lighting. For three of standard, single three-band and twin three-band fluorescent lamps, the values of conversion factor for converting illuminance to PPF fell within the narrow range from 76 to 791x/$\mu$molㆍm$^{-2}$ ㆍs$^{-l}$ . However, for PG lamp, it was 29.71x/$\mu$molㆍm$^{-2}$ ㆍs$^{-1}$. Also, the values of conversion factor for converting PPF to irradiance of fluorescent lamp used in this study ranged between 4.85 and 5.34$\mu$molㆍm$^{-2}$ ㆍs$^{-1}$/Wㆍm$^{-2}$ .

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이종(異種) 광원 조합에 의한 복수 광원의 분광 방사특성과 광달(光達) 거리 및 집어등 운용방법 (Characteristics of Spectral Irradiance Based on the Distance from the Light Source and Operating Method for Fishing Lamps with a Combined Light Source)

  • 최석진
    • 한국수산과학회지
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    • 제42권6호
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    • pp.711-720
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    • 2009
  • Characteristics of spectral irradiance based on the distance from the light source, which combined metal halide lamp and high-luminance light-emitting diode (LED) light, were studied to investigate a suitable operating method for fishing lamps of the next generation. A 380-780 nm wavelength radiation was superior when using 1 W electrical power in the order of metal halide lamp, blue LED, white LED, and combined LED lights. The wavelengths at which the irradiance was at a maximum were fixed to 581 nm for the light source, which was combined for each ratio. If the irradiance characteristics at 300-1100 nm wavelengths were set as 100%, the irradiance rates at 400-599 nm were 100%, 72.7%, 88.9%, and 69.5% for the blue, white, combined LED lights, and metal halide lamp, respectively. This indicated that the color rendering of the LED lights was dependent on the metal halide lamp light source. When the horizontal profiles (450-550 nm wavelength) of irradiances were compared to a different type of light source in the ratio white LED: combined LED lights: blue LED: metal halide lamp, the irradiated area of more than $0.01\;{\mu}mol/s/m^2/nm$ was in the ratio 1.0 : 1.3 : 1.7 : 37.3, respectively. Based on the radiation characteristics and irradiance according to the distance from the light source, LED lights have an estimated economic efficiency if used before and after operation of a metal halide lamp.

최적의 램프뱅크형태를 결정하기 위한 열유동 해석 (A Thermal Flow Analysis for an Optimal shape of Solar Lamp Bank)

  • 백상화
    • 한국태양에너지학회 논문집
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    • 제32권4호
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    • pp.82-89
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    • 2012
  • This study is on the thermal flow analysis to select an optimal shape of solar lamp bank. Solar Lamp bank is designed by the lamp bank design program based on point light source theory. The reliability of the program for lamp bank design is verified through irradiance variation experiments of a kind of lamp according to horizontal distance. Solar lamp bank facilitates heat distribution and satisfies the irradiance in the three wave length which test guidelines require. Among the 4 kinds of lamp bank, since lamp bank type D satisfies uniformity ${\pm}10%$ and also doesn't exceed total irradiance 1,232 $W/m^2$, type D is finally selected.

A STUDY ON THE DIFFUSE ATTENUATION COEFFICIENT OF DOWN-WELLING IRRADIANCE AROUND THE YELLOW SEA

  • Min, Jee-Eun;Ahn, Yu-Hwan;Ryu, Joo-Hyung;Lee, Kyu-Sung
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2006년도 Proceedings of ISRS 2006 PORSEC Volume I
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    • pp.459-462
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    • 2006
  • The diffuse attenuation coefficient for down-welling irradiance ($K_d$) is an important parameter for ocean studies including remote sensing applications. For the vast ocean, ocean color remote sensing is the only possible means to get the fine-scale measurements of $K_d$. To develop a technique of estimating $K_d$ from remotely sensed data, the following underwater optical parameters (absorption coefficient (a), attenuation coefficient (c), scattering coefficient (b), diffuse attenuation coefficient ($K_d$), etc.) have been studied. For this research we conducted the field campaign around the Yellow Sea at $8{\sim}9$ June, 2006. We obtained a set of underwater optical parameter data: down-welling irradiance ($E_d$), up-welling irradiance ($E_u$) and up-welling radiance ($L_u$) using TriOS optical sensors and a, c coefficient using Spectral Absorption and Attenuation Meter (AC-S). We then derived $K_d$ values from $E_d$ for each depth.

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