kma’s geostationary meteorological satellite

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하하하 하하하하 하하하 하하하하 하하하 하하하하 하하하 하하하하 KMA’s Geostationary Meteorological Satellite 6 th GOES-R Users’ Conference Madison, Wisconsin, November 3 2009 Suh, Ae-Sook [email protected] Direct General of National Meteorological Satellite Center

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6 th GOES-R Users’ Conference Madison, Wisconsin, November 3 2009. KMA’s Geostationary Meteorological Satellite. Suh , Ae - Sook [email protected] Direct General of National Meteorological Satellite Center. Introduction of NMSC. Organization. Quota (43) Current (40). - PowerPoint PPT Presentation

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Page 1: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼하늘을 친구처럼 국민을 하늘처럼

KMA’s Geostationary Me-teorological Satellite

6th GOES-R Users’ ConferenceMadison, Wisconsin, November 3 2009

Suh, [email protected] General of

National Meteorological Satellite Center

Page 2: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼하늘을 친구처럼 국민을 하늘처럼

Introduction of NMSC

2World Best 365

Page 3: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼 3World Best 365

 

Organization

 

Direct general of National Meteorological Satellite

Center (1)

Satellite Development and Planning Division

Quota (14)Current (13)

Satellite System Oper-ation Division

Quota (16)Current (15)

Satellite Data Analysis Division

Quota (12)Current (11)

Quota (43)Current (40)

Page 4: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼 4

Gross area : 33,058 ㎡

Floor space : 6,923 ㎡(3 stories above ground & 1 below)

Period : 2005 ~2008

Expenses : 14.4 billion won

NMSC building construction

World Best 365

Page 5: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼 5

COMS Ground System for :

Antenna/RF

Data Pre-processing

Data Processing

Data Analysis

Data Dissemination

Integrated Monitor & Control

Job Management

Data Management

Data Communication

Satellite Monitoring

Application Development

World Best 365

Page 6: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼 6World Best 365

Current Status of COMS

Page 7: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼 7

COMS Development

Ka-band Antenna

MI

GOCI

Solar Array

Bus

MODCS S/L

band antenna

Period : 2003 ~ 2009(7 years) Expenses : 74.9 billion won / total 354.9 billion won Governmental Collaborator : MEST, MLTM, KCC Orbit : 128. 2E, geostationary orbit Mass/Lifetime : 2,500kg, 7-year

World Best 365

Page 8: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼

Milestone

World Best 365

Analysis on system requirementsLaunch& IOT Operation

Satellite Design & ReviewModules Assembly

Launch & IOT

Preliminary design

Critical design Platform Assembly Integration Test

System AssemblyIntegration Test

System design MI Test

MI delivery

Satellite System Assembly

System

Design

Review

Preliminary

Design

Review

Critical

Design

Review

Launch Kick-off Pre-Shipment

Review

2004 2005 2006 200820072003

Choose overseas

partners

NowManufacture

Readiness

Review

2010

Prepare the Launch

2009

Page 9: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼 9World Best 365

Baseline Products and Ser-vice Plan

COMS

Atmospheric motion vector

Outgoing Longwave Radiation

Upper Tropo-spheric Humid-

ity

Cloud Top Temperature

Land Surface Temperature

Cloud Detec-tion

Sea Surface Temperature

Snow/Sea Ice Detection

FogTropospheric Pre-cipitable Water

Cloud Analy-sis

Clear Sky Radia-tion

Aerosol Optical Depth

Insolation

Aerosol Index Rainfall Intensity

Animated Picture Ser-

vice

Validation

CMDPS development (16 products)

Page 10: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼 10World Best 365

Future Plan

Page 11: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼 11

Development of COMS follow-on

2016 COMS follow-on launch

Development of high performance meteorological instrument Feasibility study in the first half of 2009

World Best 365

Page 12: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼

Satellite data utilization roadmapMain areas 1st phase (3 years) 2nd phase (2 years) Objective

Satellite data assimilation

Aerosol /Asian dust retrieval algorithm development

Aerosol & Asian dust model coupling

Next generation satellite data selection

Next generation satellite data collection / analysis

T.q, cloud,rainfall retrieval algorithm development

Data assimilation technique selection

Aerosol data assimilation technique development

Data assimilation model validation

Data assimilation technique development & operation

Next generation satellite data application technique development

Regional model & satellite data assimilation

Land variables utilization using satellite data NWP results

accuracy Improvement using satellite

Satellite data quality control

Infrared/Visible sensor calibration technique operation

Calibration technique improvement, long-term data analysis & analysis using aircraft measurements

Production of High quality Satellite dataOperating the validation technique of Satellite

main products Data Collection for validation and

Validation of satellite products

Asian dust

Aerosol retrieval algorithm development

Aerosol optical depth retrieval

Analysis of solar occultation characteristic and aerosol effect

Aerosol global 3-dim distribution retrieval

Stratospheric aerosol retrieval

Stratospheric aerosol radiative forcing retrieval

Aerosol type retrieval Aerosol radiative forcing retrieval

Validation of Asian dust results Aerosol products accuracy improvement

Climate monitoring & process analysis

Investigation of Long term trend of climate factor variation & climate feedback

Climate change prediction & monitoring improvement

Effect of Global warming on water-cycle variation analysis

Space-based intercalibration technique development using Climate data

Satellite data collection & DB implementation

Analysis of Correlation between desertification monitoring & climate factor in E.Asia

Unexpected weather analysis due to warming

Global warming effect on climate system

Desertification effect on global climate change

Very short range forecasting

Typhoon & rainfall monitoring system development

Regional linear coefficient development & improvement using regional monitoring

Severe weather forecast using satellite

Atmospheric stability index development using satellite data

Severe weather detection forecast system building & improvement/ severe weather case study(rainy spell, typhoon)

Page 13: KMA’s Geostationary Meteorological Satellite

하늘을 친구처럼 국민을 하늘처럼

Thank you