• 제목/요약/키워드: weather satellite

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Satellite-based In-situ Monitoring of Space Weather: KSEM Mission and Data Application

  • Oh, Daehyeon;Kim, Jiyoung;Lee, Hyesook;Jang, Kun-Il
    • Journal of Astronomy and Space Sciences
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    • 제35권3호
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    • pp.175-183
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    • 2018
  • Many recent satellites have mission periods longer than 10 years; thus, satellite-based local space weather monitoring is becoming more important than ever. This article describes the instruments and data applications of the Korea Space wEather Monitor (KSEM), which is a space weather payload of the GeoKompsat-2A (GK-2A) geostationary satellite. The KSEM payload consists of energetic particle detectors, magnetometers, and a satellite charging monitor. KSEM will provide accurate measurements of the energetic particle flux and three-axis magnetic field, which are the most essential elements of space weather events, and use sensors and external data such as GOES and DSCOVR to provide five essential space weather products. The longitude of GK-2A is $128.2^{\circ}E$, while those of the GOES satellite series are $75^{\circ}W$ and $135^{\circ}W$. Multi-satellite measurements of a wide distribution of geostationary equatorial orbits by KSEM/GK-2A and other satellites will enable the development, improvement, and verification of new space weather forecasting models. KSEM employs a service-oriented magnetometer designed by ESA to reduce magnetic noise from the satellite in real time with a very short boom (1 m), which demonstrates that a satellite-based magnetometer can be made simpler and more convenient without losing any performance.

현업용 기상위성에 대한 주도권 다툼: 1960년 TIROS 발사 이후 (Competing for the Responsibility of the Operational Meteorological Satellite Program: After the Launch of TIROS in 1960)

  • 안명환
    • 대기
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    • 제24권2호
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    • pp.265-281
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    • 2014
  • Currently, Korea is developing a Cheollian follow-on satellite program, named as Geostationary Korea Multipurpose Satellite 2 (GK-2), which consists of two satellites. One satellite (GK-2A) is dedicated to the meterological mission, while the second one (GK-2B) hosts two main payloads for the ocean and environmental application. As GK-2A is dedicated to the meteorological mission unlike Cheollian, there have been discussions on the possibility of transferring the responsibilities of the GK-2A program to the Korea Meteorological Administration. To help resolve any consumptive disputes or to find an efficient way for the GK-2A program, the events happened after the successful launch of the first meteorological satellite TIROS-1 in the U.S. in April 1960 are investigated. With the successful demonstration of usefulness of TIROS-1 for the meteorological applications, organizations such as the Weather Bureau and the Department of Defense, responsible for the real time application of the TIROS 1 data, strongly requested for an operational meteorological satellite program which resulted in the plan for the National Operational Meteorological Satellite System (NOMSS). The plan was strongly supported by Kennedy Adminstration and was put forwarded for the new program under the responsibility of Weather Bureau to the Congress. However, the responsible Committee on Science and Aeronautics sided with NASA and requested major revision of the responsibility. Due to many unfavorable conditions, Weather Bureau accepted the requests and signed with NASA on the agreement for the operational meteorological satellite. However, with the delay of Nimbus satellite which is planned to be used for the prototype of the operational satellite and changes of the unfavorable situations, the Weather Bureau could draw a second agreement with NASA. The new agreement reflected most propositions requested by the Weather Bureau for the NOMSS plan. Until now the second agreement is regarded as the basic principles for the operational meteorological satellite program in the U.S. This study investigates the backgrounds and processes of the second agreement and its implications for the GK-2 program.

차세대 정지궤도 기상위성관측의 편익과 활용 확대 방안: GOES-16에서 얻은 교훈 (Benefits of the Next Generation Geostationary Meteorological Satellite Observation and Policy Plans for Expanding Satellite Data Application: Lessons from GOES-16)

  • 김지영;장근일
    • 대기
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    • 제28권2호
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    • pp.201-209
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    • 2018
  • Benefits of the next generation geostationary meteorological satellite observation (e.g., GEO-KOMPSAT-2A) are qualitatively and comprehensively described and discussed. Main beneficial phenomena for application can be listed as tropical cyclones (typhoon), high impact weather (heavy rainfall, lightning, and hail), ocean, air pollution (particulate matter), forest fire, fog, aircraft icing, volcanic eruption, and space weather. The next generation satellites with highly enhanced spatial and temporal resolution images, expanding channels, and basic and additional products are expected to create the new valuable benefits, including the contribution to the reduction of socioeconomic losses due to weather-related disasters. In particular, the new satellite observations are readily applicable to early warning and very-short time forecast application of hazardous weather phenomena, global climate change monitoring and adaptation, improvement of numerical weather forecast skill, and technical improvement of space weather monitoring and forecast. Several policy plans for expanding the application of the next generation satellite data are suggested.

나래웨더를 위한 궤적기반 항공기상 정보와 항공교통 정보의 통합 방안 (An Integration Approach of Trajectory-Based Aviation Weather and Air Traffic Information for NARAE-Weather)

  • 김상일;안도섭;김지연;김승철;한경수
    • 대한원격탐사학회지
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    • 제39권6_1호
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    • pp.1331-1339
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    • 2023
  • 항공기상청은 국가항행계획(National ATM Reformation and Enhancement Plan, NARAE)을 지원하기 위해 NARAE-Weather 프로젝트를 통한 궤적기반 항공기상 서비스를 개발 중에 있다. 특히, 기상자료는 표준화된 형식의 디지털 데이터를 제공하므로 항공기상 데이터와 항공교통 정보와 통합하는 것이 가능하다. 따라서 본 논문에서는 수치모델 자료의 구조화를 통해 기상 정보와 비행 궤적 정보의 데이터 통합을 위한 접근 방식을 제안하였다. 구조 변환된 자료를 활용한 추출결과는 성능 측면에서 원본자료에서 추출한 결과보다 우수한 결과를 보였으며, 해당 연구를 통해 항공 운항의 안전성과 효율성을 향상시키는데 도움이 될 것이다.

기상정보의 활용에 관한 종관적 연구 (Longitudinal Study on the Usage of Weather Information)

  • 김광명
    • 한국초등과학교육학회지:초등과학교육
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    • 제17권2호
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    • pp.123-136
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    • 1998
  • In this study, it was purposed to investigate that the student's understading and usage of weather information for the students of elementary, middle and high school The questionaire of 20 questions of 5 categories which included how to get weather information, the understanding of reason for variation of weather elements, the abilities of reading weather map, understanding of weather forecast and the necessity and usefulness of weather map and clouds pictures of weather satellite were prepared and 2 classes of elementary school 5th grade each one class of 2nd and 3rd grade of middle school and 2 classes of high school were tested. followings were revealed in this study; 1) Students of all school are fond of TV watching to get weather information as they used to. 2) They think air temperatures is the most important weather elements and then rainfall. 5ut they seems to unknown the reason why weather elements are vary. 3) They seems to have poor ability of reading weather symbols in weather map and the distribution of air pressure systems. 4) They can read and understand about the reports of words on weather forecast, but most of them can't make weather forecast by the reading of weather map. 5) More than half of students think that the weather map is helpful and especially the cloud pictures from weather satellite is useful for usage of weather information.

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Space Weather Effects on GEO Satellite Anomalies during 1997-2009

  • 최호성;이재진;조경석;조일현;박영득
    • 천문학회보
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    • 제35권1호
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    • pp.30.2-30.2
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    • 2010
  • Numerous operational anomalies and satellite failures have been reported since the beginnings of the "space age". Space weather effects on modern spacecraft systems have been emphasized more and more as increasing their complexity and capability. Energetic particles potentially can destroy and degrade electronic components in satellites. We analyzed the geostationary (GEO) satellite anomalies during 1997-2009 to search possible influences of space weather on the satellite anomalies like power problem, control processor problem, attitude control problem, etc. For this we use particle data from GOES and LANL satellites to investigate space weather effects on the GEO satellites' anomalies depending on Kp index, local time, seasonal variation, and high-energy electron contribution. As results, we obtained following results: (1) there is a good correlation between geomagnetic index(Kp) and anomaly occurrences of the GEO satellite; (2) especially during the solar minimum, occurrence of the satellite anomalies are related to electron flux increase due to high speed solar wind; (3) satellite anomalies occurred more preferentially in the midnight and dawn sector than noon and dusk sector; (4) and the anomalies occurred twice more in Spring and Fall than Summer and Winter; (5) the electron with the lowest energy channel (50-75keV) has the highest correlation (cc=0.758) with the anomalies. High association between the anomalies and the low energy electrons could be understand by the facts that electron fluxes in the spring and fall are stronger than those in the summer and winter, and low-energy electron flux is more concentrated in the dawn sector where the GEO satellite anomalies occurred more frequently than high-energy electron flux. While we could not identify what cause such local time dependences, our results shows that low-energy electrons (~100keV) could be main source of the satellite anomaly, which should be carefully taken into account of operating satellites.

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Space Weather Monitoring System for Geostationary Satellites and Polar Routes

  • Baek, Ji-Hye;Lee, Jae-Jin;Choi, Seong-Hwan;Hwang, Jung-A;Hwang, Eun-Mi;Park, Young-Deuk
    • 천문학회보
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    • 제36권2호
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    • pp.101.2-101.2
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    • 2011
  • We have developed solar and space weather monitoring system for space weather users since 2007 as a project named 'Construction of Korea Space Weather Prediction Center'. In this presentation we will introduce space weather monitoring system for Geostationary Satellites and Polar Routes. These were developed for satisfying demands of space weather user groups. 'Space Weather Monitoring System for Geostationary Satellites' displays integrated space weather information on geostationary orbit such as magnetopause location, nowcast and forecast of space weather, cosmic ray count rate, number of meteors and x-ray solar flux. This system is developed for space weather customers who are managing satellite systems or using satellite information. In addition, this system provides space weather warning by SMS in which short message is delivered to users' cell phones when space weather parameters reach a critical value. 'Space Weather Monitoring System for Polar Routes' was developed for the commercial airline companies operating polar routes. This provides D-region and polar cap absorption map, aurora and radiation particle distribution, nowcast and forecast of space weather, proton flux, Kp index and so on.

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A study on GEO satellite signals in L - to Ka-band affected by Asian Sand Dust

  • Hong Wan-Pyo
    • Journal of information and communication convergence engineering
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    • 제3권3호
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    • pp.146-151
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    • 2005
  • This paper represents an attempt to bring together and analyses the measurement data measured by the Satellite Signal Monitoring Center in Korea and the Korea Meteorological Administration/Korea Meteorological Research Institute in close cooperation with this study team. This paper presents the signal characteristic of GEO satellite operating in frequency range 1 to 20GHz associated with Asian Sand Dust (the so-called Yellow Sand Dust). The downlink signal power (dBm) for L-, S-, C-, Ku-, and Ka-band frequencies from GEO satellites were measured in a clear weather and in Asian Sand Dust weather by the Satellite Signal Monitoring Center. The measured signal power(dBm) were compared to the total number concentration and size distribution of Sand Dust that were measured by the Korea Meteorological Administration/Korea Meteorological Research Institute and the possible correlation between these sets data were analyzed. The results demonstrate that the downlink signal level (dBm) of GEO satellite is attenuated by Asian Sand Dust. Hitherto, merger information has been reported as to the influence of sand dust on satellite communications operating in regions affected by sand dust.

지구정지궤도 위성의 오동작 사례를 통해 본 우주 환경 영향 분석 (Analysis on Space Environment from the Anomalies of Geosynchronous Satellites)

  • 이재진;황정아;봉수찬;최호성;조일현;조경석;박영득
    • Journal of Astronomy and Space Sciences
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    • 제26권4호
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    • pp.521-528
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    • 2009
  • 우주 환경이 인공위성의 오동작에 영향을 미친다는 사설은 이미 잘 알려진 것이지만, 구체적으로 인공위성의 오동작이 발생하였을 경우, 이것을 우주 환경에 의한 영향이라고 주장하기는 쉽지 않다. 이는 위성의 오동작 증상이 다양할 뿐만 아니라, 오동작 증상을 재현하는 것이 거의 불가능하기 때문이다. 이 연구에서는 이러한 위성의 오동작을 통계적으로 분석하여 어떠한 경우에 위성의 오동작이 발생할 확률이 높아지는지 찾고자 하였다. 특히 많은 비용이 소요되며 활용도가 높은 지구 정지 궤도 위성의 오동작 경향을 분석함으로써 위성 운용자에게 유용한 정보를 제공하고자 하였다. Satellite News Digest사에서 제공하는 1997년부터 2008년까지의 위성 오동작 자료를 분석하였는데, 분석 결과 지구 정지 궤도 인공위성은 Kp 지수와는 큰 상관관계를 가지지 않았으며, 봄과 가을에 그리고 자정부터 새벽 시간대에 오동작이 발생할 확률이 높음을 알 수 있었다. 또한 지구 정지 궤도에서의 고에너지 전자의 밀도가 높아질수록 위성의 오동작이 많이 발생했는데, 이러한 경향은 태양 활동 극대기일 때 보다는 극소기 일 때 더 잘 나타났다.

The Research about Aerial photographing system(PKNU No.2) development

  • Kim, Ho-Yong;Choi, Chul-Uong;Lee, Eun-Khung;Jun, Sung-Woo
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2003년도 Proceedings of ACRS 2003 ISRS
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    • pp.110-112
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    • 2003
  • The researchers, who seek geological and environmental information, depend on the remote sensing and aerial photographic datum from various commercial satellites and aircraft. However, the adverse weather conditions and the expensive equipment can restrict that the researcher can collect their data anywhere and any time. To allow for better flexibility, we have developed a compact, a multispectral automatic Aerial photographic system. This system's Multi-spectral camera can catch the visible (RGB) and infrared (NIR) bands (3032${\ast}$2008 pixel) image. Our system consists of a thermal infrared camera and automatic balance control, and it managed and controlled by a palm-top computer. And it includes a camera gimbals system, GPS receiver, weather sensor and etc. As a result, we have successfully tested its ability to acquire aerial photography, weather data, as well as GPS data, making it a very flexible tool for environmental data monitoring.

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