• 제목/요약/키워드: Zenith angle

검색결과 89건 처리시간 0.023초

Sequential detection simulation of red-tide evolution for geostationary ocean color instrument with realistic optical characteristics

  • Jeong, Soo-Min;Jeong, Yu-Kyeong;Ryu, Dong-Ok;Kim, Seong-Hui;Cho, Seong-Ick;Hong, Jin-Suk;Kim, Sug-Whan
    • 한국우주과학회:학술대회논문집(한국우주과학회보)
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    • 한국우주과학회 2009년도 한국우주과학회보 제18권2호
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    • pp.49.3-49.3
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    • 2009
  • Geostationary Ocean Colour Imager (GOCI) is the first ocean color instrument that will be operating in a geostationary orbit from 2010. GOCI will provide the crucial information of ocean environment around the Korean peninsula in high spatial and temporal resolutions at eight visible bands. We report an on-going development of imaging and radiometric performance prediction model for GOCI with realistic data for reflectance, transmittance, absorption, wave-front error and scattering properties for its optical elements. For performance simulation, Monte Carlo based ray tracing technique was used along the optical path starting from the Sun to the final detector plane for a fixed solar zenith angle. This was then followed by simulation of red-tide evolution detection and their radiance estimation, following the in-orbit operational sequence. The simulation results proves the GOCI flight model is capable of detecting both image and radiance originated from the key ocean phenomena including red tide. The model details and computational process are discussed with implications to other earth observation instruments.

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How multipath error influences modernized GNSS ambiguity resolution in urban areas

  • Kubo, Nobuaki;Yasuda, Akio
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2006년도 International Symposium on GPS/GNSS Vol.2
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    • pp.131-136
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    • 2006
  • Commercial uses of GPS have been growing rapidly with applications for aircraft, ship, and land vehicle navigation as well as for surveying and time keeping. The next generation GPS and Japanese QZS (Quasi Zenith Satellite) will provide three different civil signals. Galileo will also provide several types of civil signals. The availability of the third civil frequency has obvious advantages to instantaneous carrier phase accuracy and ambiguity resolution for centimeter level measurements. This paper discusses the effects of additional new civil signals for the high accuracy positioning in urban areas based on simulation using practical raw data. As for constellation, only GPS and GPS+QZS are considered. For positioning, a short distance baseline is assumed in order to disregard atmosphere effects. In this simulation, mask angle and signal conditions were fixed and ambiguity success rates were compared between different triple frequency combination scenarios. The coefficient of reflection was set randomly from 0.05 to 0.5 and the multipath delay was also set randomly from 5-100 m. Visible satellites and signal strength were determined by raw data collected in Tokyo by car. These simulation results have confirmed that the availability of high accuracy positioning will increase in all scenarios if we use GPS+QZS with triple frequencies.

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ET 중력계에 의한 기조력 변화 연구 (A Study on the Earth Tide Variations by ET Gravimeter)

  • 박정환;한욱
    • 자원환경지질
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    • 제31권2호
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    • pp.141-147
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    • 1998
  • Earth tide observations were taken at AMIST observatory in Seoul by LaCoste-Romberg ET gravimeter from September 2 to 16, 1997 for determining the gravimetric factor ($\delta$) and analyzing the tidal components. Meter drifts were corrected by regression and then denoised by threshholding wavelet, a data processing tool. The mean value of $\delta$ is 1.2 and the mean phase lag of & ($M_2$, $S_2$) and & $K_1$, $O_1$) is $0.07{\pm}0.03^{\circ}$ and $0.08{\pm}0.07^{\circ}$ by analyzing the observed earth tides. For yielding measurements of gravity accurate to about 0.01 mgal, the Earth tide observations are required by ET meter. The tidal variations are due to the planet's distance and zenith angle. With the exception of Earth-Moon and Earth-Sun mechanism, the possible causes of tidal variations are tectonical, meterological and hydrological perturbations. The long period and broad observations are required for determining the state of art gravimetric factor in Korea.

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Improvement of COMS Land Surface Temperature Retrieval Algorithm

  • Hong, Ki-Ok;Suh, Myoung-Seok;Kang, Jeon-Ho
    • 대한원격탐사학회지
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    • 제25권6호
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    • pp.507-515
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    • 2009
  • Land surface temperature (LST) is a key environmental variable in a wide range of applications, such as weather, climate, hydrology, and ecology. However, LST is one of the most difficult surface variables to observe regularly due to the strong spatio-temporal variations. So, we have developed the LST retrieval algorithm from COMS (Communication, Ocean and Meteorological Satellite) data through the radiative transfer simulations under various atmospheric profiles (TIGR data), satellite zenith angle (SZA), spectral emissivity, and surface lapse rate conditions using MODTRAN 4. However, the LST retrieval algorithm has a tendency to overestimate and underestimate the LST for surface inversion and superadiabatic conditions, respectively. To minimize the overestimation and underestimation of LST, we also developed day/night LST algorithms separately based on the surface lapse rate (local time) and recalculated the final LST by using the weighted sum of day/night LST. The analysis results showed that the quality of weighted LST of day/night algorithms is greatly improved compared to that of LST estimated by original algorithm regardless of the surface lapse rate, spectral emissivity difference (${\Delta}{\varepsilon}$) SZA, and atmospheric conditions. In general, the improvements are greatest when the surface lapse rate and ${\Delta}{\varepsilon}$ are negatively large (strong inversion conditions and less vegetated surface).

GMS/S-VISSR 자료로부터 Bispectral Thresholds 기법을 이용한 운량 분석에 관하여 (Cloud Cover Analysis from the GMS/S-VISSR Imagery Using Bispectral Thresholds Technique)

  • 서명석;박경윤
    • 대한원격탐사학회지
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    • 제9권1호
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    • pp.1-19
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    • 1993
  • A simple bispectral threshold technique which reflects the temporal and spatial characteristics of the analysis area has been developed to classify the cloud type and estimate the cloud cover from GMS/S-VISSR(Stretched Visible and Infrared Spin Scan Radiometer) imagery. In this research, we divided the analysis area into land and sea to consider their different optical properties and used the same time observation data to exclude the solar zenith angle effects included in the raw data. Statistical clear sky radiance(CSRs) was constructed using maximum brightness temperature and minimum albedo from the S-VISSR imagery data during consecutive two weeks. The CSR used in the cloud anaysis was updated on the daily basis by using CSRs, the standard deviation of CSRs and present raw data to reflect the daily variation of temperature. Thresholds were applied to classify the cloud type and estimate the cloud cover from GMS/S-VISST imagery. We used a different thresholds according to the earth surface type and the thresholds were enough to resolve the spatial variation of brightness temperature and the noise in raw data. To classify the ambiguous pixels, we used the time series of 2-D histogram and local standard deviation, and the results showed a little improvements. Visual comparisons among the present research results, KMA's manual analysis and observed sea level charts showed a good agreement in quality.

고정점에서 GPS 측위정도에 관한 연구 (A Study on the Accuracy of Position by GPS at Fixed Station)

  • 정연수
    • 수산해양교육연구
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    • 제10권1호
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    • pp.53-62
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    • 1998
  • Accuracy of positions by GPS receiver at Tongyoung Port were measured and analysed in order to get more credible information on GPS positioning for vessels. Positions were automatically recorded every 5-Min from 1st October, 1997 to 30th of November, 1997 by two identical GPS receivers at the Laboratory of Navigation in the College of Marine Science, Gyeongsang University ($34^{\circ}$ 49' 57.985"N, $128^{\circ}$ 24' 06.562") and at the training ship "Gyeongyang" alongside in the tongyoung passenger port ($34^{\circ}$ 50" 10.080"N, $128^{\circ}$ 25' 16.415") as fixed positions. The results are as follows ; 1. Number of the usable satellites observing Zenith angle between $9^{\circ}$ and $82^{\circ}$ was normally 4 during a day 24 hours except for 3 hours with total Number 20. 2. Accuracy of position with time was widely dispersed around center of standard position as well as directional deviation around mean position. 3. Specific error of GPS receiver showed a little deviation by alternative measurements for consecutive 5 days at each fixed position respectively. 4. Accuracy of GPS position at 2 fixed positions of Tongyoung port was revealed 27.2 m as minimum value while normal accuracy for all day could be less than 50 m.

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한반도 식생에 대한 MODIS 250m 자료의 BRDF 효과에 대한 반사도 정규화 (A Reflectance Normalization Via BRDF Model for the Korean Vegetation using MODIS 250m Data)

  • 염종민;한경수;김영섭
    • 대한원격탐사학회지
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    • 제21권6호
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    • pp.445-456
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    • 2005
  • 지표변수는 지면 근처의 기후변화에 중요한 역할을 하기 때문에, 충분히 높은 정확성을 가진 값이 산출되어야 한다 하지만 지표 반사도는 강한 이방성(non-Lambertian) 특징을 가지고 있기 때문에, 위성 천저각으로부터 멀어질수록 태양-지점-위성과의 기하학적 영향을 더욱 강하게 받는 효과를 가져온다. 또한 지표 각 영향을 포함하고 있는 지표 반사도는 노이즈를 가지게 된다. 따라서 본 연구의 목적은 한반도 지역의 MODIS 반사도 자료(250m)를 이용하여 각 영향이 제거된 보다 정확한 반사도 값에 대한 데이터베이스를 제공하는 것이다. 본 연구에서는 매일 2회씩 제공하는 MODIS(Moderate Resolution Imaging Spoctroradiometer) 센서의 가시영역과 근적외영역의 반사도(250m)자료를 이용하였다. 먼저 구름화소를 제거하기 위해서 연속적인 물리과정을 통하여 각각의 구름 화소를 제거하였다. 그리고 지리보정은 MODIS 센서에서 제공하는 지리정보자료를 이용하여 2차 다항회귀식을 통한 최근접 내삽법을 사용하였다. 본 연구에서는 지표 이방성 효과를 보정하기 위해서 반 경험적 양방향성분포함수(BRDF) 모델을 사용하였다. 이 알고리즘은 위성으로부터 관측된 위성천정각, 태양천정각, 위성방위각, 태양방위각과 같은 각 성분을 이용하여 Kernel-deriven 모델의 역변환을 통하여 지표 반사도를 재생산한다. 먼저 우리는 BRDF 모델을 수행하기 위해 총 31일 모델 관측 실행기간을 고려하였다. 다음 단계로 각각의 화소 및 밴드에 대해서 BRDF 모델을 통하여 분리된 각 성분들을 변조함으로써 위성 직하점 반사도 정규화가 수행되었다. 모델을 이용하여 산출된 반사도 값은 실제 위성 반사도 값과 잘 일치하였고, RMSE(Root Mean Square Error)값은 전체적으로 약 0.01(최고값=0.03)이였다. 마지막으로, 우리는 한반도 지역에 대해서 2001년 동안 총 36개로 구성된 정규화 지표반사도 값의 데이터베이스를 구축하였다.

MODIS AOD 기대 오차에 따른 6SV 기반 KOMPSAT-3A 채널별 지표반사도 오차 영향 분석 (Analysis of the Impact of Surface Reflectance Error Retrieved from 6SV for KOMPSAT-3A according to MODIS AOD Expected Error)

  • 정대성;심수영;우종호;김나연;박성우;김홍희;한경수
    • 대한원격탐사학회지
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    • 제39권6_1호
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    • pp.1517-1522
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    • 2023
  • 본 연구에서는 Second Simulation of the Satellite Signal in the Solar Spectrum Vector를 활용하여 Moderate Resolution Imaging Spectroradiometer (MODIS) aerosol optical depth (AOD)의 기대 오차(expected error, EE)가 KOMPSAT-3A 지표반사도(surface reflectance, SR)의 정확도에 미치는 영향을 평가한다. 연구에서 다양한 지상 AOD와 그에 따른 MODIS AOD EE를 고려함으로써, 파장이 짧고 태양천정각(solar zenith angle, SZA)이 높을수록 SR 오류가 증가한다는 결과를 확인했으며, 이는 파장과 SZA 고려 사항을 통합하여 대기보정 알고리즘을 개선하기 위한 추가 연구가 필요하다는 점을 강조한다. 또한, 이 연구는 대기보정 과정에서 다른 위성의 AOD 자료 활용에 대해 더 잘 이해하기 위한 기초 자료를 제공하고 대기보정 기술 발전에 기여할 것으로 예상한다.

초분광센서를 활용한 이산화질소 농도 추정식에 관한 연구 (Study on the Concentration Estimation Equation of Nitrogen Dioxide using Hyperspectral Sensor)

  • 전의익;박진우;임성하;김동우;유재진;손승우;전형진;윤정호
    • 한국산학기술학회논문지
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    • 제20권6호
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    • pp.19-25
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    • 2019
  • 국내 산업단지에서 배출되는 대기오염물질의 모니터링을 위해 굴뚝원격감시시스템이 운영되고 있으나 대상 시설이 한정적이어서, 시스템이 설치되지 않은 시설은 단속 요원이 직접 모니터링 및 단속을 수행하고 있다. 그래서 효율적인 산업단지에서 배출되는 대기오염물질의 모니터링을 위해 다양한 센서를 활용한 연구들이 수행되고 있다. 이에 따라 본 연구에서는 초분광센서로 측정할 수 있는 분광복사량을 활용하여 대기오염물질 중 이산화질소의 농도를 추정할 수 있는 공식을 개발하고 검증하였다. 농도 추정식 개발을 위해 다양한 농도의 이산화질소를 대상으로 태양천정각, 관측천정각, 상대방위각을 다르게 하여 분광복사량을 관측하였다. 관측된 분광복사량에서 특정 파장 간의 값의 차이를 흡수 깊이로 하였으며, 흡수 깊이와 이산화질소 농도와의 관계를 이용하여 농도 추정식을 개발하였다. 그리고 개발된 농도 추정식들의 검증을 위해 이산화질소와 아황산가스가 혼합된 가스를 대상으로 측정한 분광복사량을 이용하였다. 그 결과, 추정식의 형태에 따라 결정 계수와 RMSE가 0.71~0.88, 72~323 ppm으로 나타났으며, 지수 형태의 농도 추정식의 결정 계수가 가장 높게 나타났다. 추정식의 형태에 따라 농도의 변화에 따른 추정 농도의 정확도가 일정하지 않지만, 향후 농도 추정식의 고도화가 이루어진다면 초분광 센서를 활용하여 산업단지 배출되는 이산화질소의 모니터링에 사용 가능할 것으로 판단된다.

서울지역의 고해상도 수치표고모델기반 태양 에너지 산출 (Estimation of Solar Energy Based on High-Resolution Digital Elevation Model on the Seoul Area)

  • 지준범;장민;민재식;조일성;김부요;이규태
    • 대기
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    • 제27권3호
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    • pp.331-344
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    • 2017
  • Solar energy is calculated using high-resolution digital elevation model (DEM). In focus on Seoul metropolitan area, correction coefficients of direct and diffuse solar energy with the topographic effect are calculated from DEM with 1720, 900, 450, 90 and 30 spatial resolutions ($m{\times}m$), respectively. The solar energy on the real surface with high-resolution is corrected using by the correction coefficients with topographic effect from the solar energy on horizontal surface with lower resolution. Consequently, the solar energy on the real surface is more detailed distribution than those of horizontal surface. In particular, the topographic effect in the winter is larger than summer because of larger solar zenith angle in winter. In Seoul metropolitan area, the monthly mean topographic effects are more than 200% in winter and within 40% in summer. And annual topographic effects are negative role with more than -60% and positive role with below 40%, respectively. As a result, topographic effect on real surface is not a negligible factor when calculating and analyzing solar energy using regional and global models.