• 제목/요약/키워드: Weather observation

검색결과 608건 처리시간 0.026초

Hinode SOT Observation of Recursive Solar Tornados

  • Bong, Su-Chan;Cho, Kyung-Suk;Kim, Yeon-Han;Park, Young-Deuk;Chae, Jong-Chul
    • 한국우주과학회:학술대회논문집(한국우주과학회보)
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    • 한국우주과학회 2009년도 한국우주과학회보 제18권1호
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    • pp.60.2-60.2
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    • 2009
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머신러닝기반의 사물인터넷 도시기상 관측자료 품질검사 알고리즘 개발에 관한 연구 (A study on the development of quality control algorithm for internet of things (IoT) urban weather observed data based on machine learning)

  • 이승운;정승권
    • 한국수자원학회논문집
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    • 제54권spc1호
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    • pp.1071-1081
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    • 2021
  • 본 연구에서는 기상청에서 수행하는 기존의 기상 관측에 대한 품질관리 절차 이외에 향후 스마트시티 등에서 활용될 수 있는 머신러닝 기반의 Internet of Things (IoT) 도시기상 관측 자료에 대한 품질검사 기준을 제안한다. 현재 기상청에서 종관기상관측(Automated Synoptic Observing System, ASOS)과 방재기상관측(Automatic Weather System, AWS) 기반으로 설정한 기준이 도시기상에 적합한지 확인하기 위하여 서울시에 설치된 SKT AWS 자료를 기반으로 사용성을 검증하였고, IoT 자체의 데이터가 가지는 특성을 고려하여 최종적으로 머신러닝 기반의 품질검사 알고리즘을 제안하였다. 품질검사 방법으로는 IoT 기기 자체에 대한 결측값 검사, 값 패턴 검사, 충분 데이터 검사, 통계적 범위 이상 검사, 시간값 이상 검사, 공간값 이상 검사를 먼저 수행하고, 기상청에서 제시하고 있는 기상 관측에 대한 품질검사인 물리한계검사, 단계검사, 지속성 검사, 기후범위 검사, 내적 일치성 검사를 5가지 기상요소에 대하여 각각 수행하였다. 제안한 알고리즘의 검증을 위하여 인천광역시 송도에 위치한 관측소에 실제 IoT 도시기상관측 데이터에 이를 적용하였다. 이를 통해 기존의 기상청 QC로는 확인할 수 없었던 IoT 기기가 가질 수 있는 결함을 확인할 수 있고, 알고리즘에 대한 검증을 진행하여 향후 스마트시티에 설치될 IoT 기상관측기기에 대한 품질검사 방법을 제안한다.

관측망 밀도가 기상 자료의 격자형 수평 분포에 미치는 영향 (Effects of Network Density on Gridded Horizontal Distribution of Meteorological Variables in the Seoul Metropolitan Area)

  • 강민수;박문수;채정훈;민재식;정보연;한성의
    • 대기
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    • 제29권2호
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    • pp.183-196
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    • 2019
  • High-quality and high-resolution meteorological information is essential to reduce damages due to disastrous weather phenomena such as flash flood, strong wind, and heat/cold waves. There are many meteorological observation stations operated by Korea Meteorological Administration (KMA) in Seoul Metropolitan Area (SMA). Nonetheless, they are still not enough to represent small-scale weather phenomena like convective storm cells due to its poor resolution, especially over urban areas with high-rise buildings and complex land use. In this study, feasibilities to use additional pre-existing networks (e.g., operated by local government and private company) are tested by investigating the effects of network density on the gridded horizontal distribution of two meteorological variables (temperature and precipitation). Two heat wave event days and two precipitation events are chosen, respectively. And the automatic weather station (AWS) networks operated by KMA, local-government, and SKTechX in Incheon area are used. It is found that as network density increases, correlation coefficients between the interpolated values with a horizontal resolution of 350 m and observed data also become large. The range of correlation coefficients with respect to the network density shows large in nighttime rather than in daytime for temperature. While, the range does not depend on the time of day, but on the precipitation type and horizontal distribution of convection cells. This study suggests that temperature and precipitation sensors should be added at points with large horizontal inhomogeneity of land use or topography to represent the horizontal features with a resolution higher than 350 m.

The Observing System Research and Predictability Experiment (THORPEX) and Potential Benefits for Korea and the East Asia

  • Park, Seon Ki
    • 대기
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    • 제14권3호
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    • pp.41-54
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    • 2004
  • In this study, a brief overview on a WMO/WWRP program - The Observing System Research and Predictability Experiment (THORPEX) and discussions on perspectives and potential benefits of Asian countries are provided. THORPEX is aimed at accelerating improvements in the accuracy of 1 to 14-day high-impact weather forecasts with research objectives of: 1) predictability and dynamical processes; 2) observing systems; 3) data assimilation and observing strategies; and 4) societal and economic applications. Direct benefits of Asian countries from THORPEX include improvement of: 1) forecast skills in global models, which exerts positive impact on mesoscale forecasts; 2) typhoon forecasts through dropwindsonde observations; and 3) forecast skills for high-impact weather systems via increased observations in neighboring countries. Various indirect benefits for scientific researches are also discussed. Extensive adaptive observation studies are recommended for all high-impact weather systems coming into the Korean peninsula, and enhancement of observations in the highly sensitive regions for the forecast error growth is required to improve forecast skills in the peninsula, possibly through international collaborations with neighboring countries.

작전기상 지원을 위한 PC 클러스터 기반의 기상수치예보시스템 (A Numerical Weather Prediction System for Military Operation Based on PC cluster)

  • 이용희;장동언;안광득;조천호
    • 한국군사과학기술학회지
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    • 제6권4호
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    • pp.45-55
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    • 2003
  • Weather conditions have played a vital role in a war. Many historical records reported that the miss use of weather information is the main reason of the lost a war. In this study we demonstrated the possibility of applying the numerical weather prediction system(NWPS) for military operations. The NWPS consists of PC-cluster as a super computer, data assimilation system ingesting many remote sensing observation, and graphic systems. High resolution prediction in NWPS can provide useful weather information such as wind, temperature, sea fog and so on for military operations.

Prototype for the Weather Monitoring System with Web - Based Data Management - Construction and Operation

  • Kim, Jinwoo;Kim, Jin-Young;Oh, Jai-Ho;Kim, Do-Yong
    • 대기
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    • 제20권2호
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    • pp.153-160
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    • 2010
  • In this paper, an attempt has been made to build and test self-configuring weather sensor networks and internet based observation system to gather atmospheric data. The aim is to provide integrated or real-time weather information in standard form using network data access protocol. This system was successfully developed to record weather information both digital as well as visual using sensor network and web-enabled surveillance cameras. These data were transformed by network based data access protocol to access and utilize for public domain. The competed system has been successfully utilized to monitor different types of weather. The results show that this is one of the most useful weather monitoring system.

연구노트 산사면에서의 야간 기상요소의 특성에 관한 연구 (On Study on Chatacteristics of Nocturnal Meteorological Parameter at Mountain Slope)

  • 전병일;박재림;박현철
    • 한국환경과학회지
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    • 제8권5호
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    • pp.633-637
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    • 1999
  • A series of meterological observation using automation weather station(AWS) carried out to investigate characteristics of nocturnal meteorological parameters for 16~17 June 1998 at Buljeongdong mountain slope, Kyungbuk. Dry temperature at valley was lower than mountain because of high lapse rate at valley, so the strong inversion layer occurrenced at mountain slope for nighttime. Contrary of dry temperature, relative humidity of valley was higher than mountain for nighttime. Wind speed at valley from sunset to next day morning was lower than mountain, but that of valley after sunrise was higher than mountain. Wind direction at valley for all observation time were southeasterlies(SE), that of mountain for nighttime were northeasterlies(NE) or northnorthwesterlies(NNW), and that of mountain after sunrise were irregular. Vapor pressure at valley for all observation time was higher mountain, particularly the difference was high for nighttime.

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DCT 및 DWT 기반의 손상된 기상레이더 영상 복원 기법 (DCT and DWT based Damaged Weather Radar Image Retrieval)

  • 장봉주;임상훈;김원;노희성
    • 한국멀티미디어학회논문지
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    • 제20권2호
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    • pp.153-162
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    • 2017
  • Today, weather radar is used as a key tool for modern high-tech weather observations and forecasts, along with a wide variety of ground gauges and weather satellites. In this paper, we propose a frequency transform based weather radar image processing technique to improve the weather radar image damaged by beam blocking and clutter removal in order to minimize the uncertainty of the weather radar observation. In the proposed method, DCT based mean energy correction is performed to improve damage caused by beam shielding, and DWT based morphological image processing and high frequency cancellation are performed to improve damage caused by clutter removal. Experimental results show that the application of the proposed method to the damaged original weather radar image improves the quality of weather radar image adaptively to the weather echo feature around the damaged area. In addition, radar QPE calculated from the improved weather radar image was also qualitatively confirmed to be improved by the damage. In the future, we will develop quantitative evaluation scales through continuous research and develop an improved algorithm of the proposed method through numerical comparison.

이동형 차량탑재 라이다 시스템을 활용한 경계층고도 산출 및 분석 (Estimate and Analysis of Planetary Boundary Layer Height (PBLH) using a Mobile Lidar Vehicle system)

  • 남형구;최원;김유준;심재관;최병철;김병곤
    • 대한원격탐사학회지
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    • 제32권3호
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    • pp.307-321
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    • 2016
  • 대기경계층고도 (Planetary Boundary Layer Height, PBLH)는 기상예측모델과 대기확산모델에 중요한 예측 인자이다. PBLH는 지역의 특성에 따라 시공간 빠르게 변화하기 때문에 이를 분석하기 위하여 시공간 고해상도로 관측된 자료가 필요하다. 본 연구에서 국립기상과학원 재해기상연구센터에서 운영중인 차량에 탑재된 라이다 시스템(Lidar observation Vehicle, LIVE)을 소개하고 이것으로 관측된 PBLH의 분석결과를 제시하였다. 분석기간 (2014년 6월 26일~30일) LIVE에서 산출된 PBLH는 WRF와 라디오존데에서 산출된 값과 비교하여 결정계수가 각각 0.68, 0.72로 높은 상관도를 나타내었다. 하지만, 라이다로 산출된 PBLH는 WRF, 라디오존데와 비교하여 값을 과대모의 하는 경향을 보였다. 이는 라이다가 중첩고도 이하 (< 300m)에서 나타나는 PBLH를 찾아내지 못하고 중첩고도 이상에서 나타나는 잔류층 (Residual Layer, RL)을 PBLH로 산출한 결과라 생각된다. 라이다를 활용하여 10분 시간 해상도로 산출된 PBLH는 일출 뒤 성장하다 태양의 남중이 최고가 되는 시점의 2시간 이후 서서히 감소하는 전형적인 일변화 경향을 보여주었다. 분석기간 평균 PBLH의 성장률은 1.79 (-2.9 ~ 5.7) m $min^{-1}$ 였다. 또한, 이동 중 관측된 라이다 신호를 고정관측 기반자료와 비교한 결과 잡음이 적은 것으로 나타났다. 이동 중 관측된 PBLH의 평균은 1065 m 였으며 인근 속초에서 비양된 라디오존데 (1150 m)와 유사한 값을 보였다. 본 연구에서 LIVE가 고해상도의 시공간 자료를 안정적으로 산출 할 수 있음을 제시하였다. 이 같은 LIVE의 장점은 에어로졸 및 대기구조에 대한 새로운 관측 패러다임 제시와 관측기술선진화에 기여도가 클 것으로 기대된다.

구름물리 관측시스템 및 산출물 검정 (Cloud Physics Observation System (CPOS) and Validation of Its Products)

  • 장기호;오성남;정기덕;양하영;이명주;정진임;조요한;김효경;박균명;염성수;차주완
    • 대기
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    • 제17권1호
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    • pp.101-108
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    • 2007
  • To observe and analyze the cloud and fog characteristics, the METeorological Research Institute (METRI) has established the Cloud Physics Observation System (CPOS) by implementing the cloud observation instruments: Forward Scattering Spectrometer Probe (FSSP), PARticle SIze and VELocity (PARSIVEL), Microwave Radiometer (MWR), Micro Rain Radar (MRR), and 3D-AWS at the Daegwallyeong Enhanced Mountain Weather Observation Center. The cloud-related products of CPOS and the validation status for the size distribution of FSSP, the precipitable water of MWR, and the rainfall rate of MRR and PARSIVEL are described.