Sentinel-6 Michael Freilich
{{Short description|Earth observation satellite}}
{{Use British English|date=November 2020}}
{{Use dmy dates|date=November 2020}}
{{Infobox spaceflight
| name = Sentinel-6 Michael Freilich
| names_list = Sentinel-6A
Jason-CS A
| image = Sentinel-6 Michael Freilich (2).jpg
| image_caption = Illustration of the Sentinel-6 Michael Freilich spacecraft in orbit above Earth with its deployable solar panels extended
| image_size = 300px
| mission_type = Oceanography mission
| COSPAR_ID = 2020-086A
| SATCAT = 46984
| website = {{url|https://www.eumetsat.int/sentinel-6}}
| mission_duration = 5.5 years (planned)
{{time interval|21 November 2020, 17:17:08|show=ymd}} (in progress)
| spacecraft_bus = Sentinel-6
| manufacturer = Airbus Defence and Space
| launch_mass = {{cvt|1192|kg}}
| dimensions = 5.13 x 4.17 x 2.34 metres
| power = 891 watts
| launch_date = 21 November 2020,
17:17:08 UTC
| launch_rocket = Falcon 9 Block 5
| launch_site = Vandenberg, SLC-4E
| launch_contractor = SpaceX
| entered_service = 21 June 2021 {{cite web|url=https://www.esa.int/Applications/Observing_the_Earth/Copernicus/Sentinel-6/New_sea-level_monitoring_satellite_goes_live|title=New sea-level monitoring satellite goes live|publisher=ESA|date=21 June 2021|access-date=23 June 2021}}
| deactivated =
| last_contact =
| orbit_reference = Geocentric orbit
| orbit_regime = Low Earth orbit
| orbit_altitude = {{cvt|1336|km}}
| orbit_inclination = 66.0°
| orbit_repeat = 10 days
| instruments = {{ubl|Radar altimeter|Advanced Microwave Radiometer (AMR-C)|GNSS Precise Orbit Determination (POD) Receiver|DORIS Receiver
|Laser Reflector Array (LRA)|Radio-occultation instrument}}
| insignia = Copernicus sentinel-6 logo.jpg
| insignia_caption = Logo of the Sentinel-6 programme
| insignia_size = 220px
| programme = Sentinel programme
| previous_mission = Sentinel-5
| next_mission = Sentinel-7
| programme2 = Copernicus programme
| previous_mission2 = Jason-3
| next_mission2 = Sentinel-6B (2025)
}}
The Sentinel-6 Michael Freilich (S6MF) or Sentinel-6A is a radar altimeter satellite developed in partnership between several European and American organizations. It is part of the Jason satellite series and is named after Michael Freilich. S6MF includes synthetic-aperture radar altimetry techniques to improve ocean topography measurements, in addition to rivers and lakes.{{Cite journal |last1=Donlon |first1=Craig J. |last2=Cullen |first2=Robert |last3=Giulicchi |first3=Luisella |last4=Vuilleumier |first4=Pierrik |last5=Francis |first5=C. Richard |last6=Kuschnerus |first6=Mieke |last7=Simpson |first7=William |last8=Bouridah |first8=Abderrazak |last9=Caleno |first9=Mauro |last10=Bertoni |first10=Roberta |last11=Rancaño |first11=Jesus |date=2021-06-01 |title=The Copernicus Sentinel-6 mission: Enhanced continuity of satellite sea level measurements from space |journal=Remote Sensing of Environment |language=en |volume=258 |pages=112395 |doi=10.1016/j.rse.2021.112395 |bibcode=2021RSEnv.258k2395D |s2cid=233566650 |issn=0034-4257|doi-access=free }} The spacecraft entered service in mid 2021 and is expected to operate for 5.5 years.
Spacecraft
The Sentinel-6 program includes two identical satellites, to be launched five years apart, Sentinel-6 Michael Freilich, which launched on 21 November 2020,{{cite news|last=Howell|first=Elizabeth|date=20 November 2020|title=SpaceX will launch the Sentinel-6 ocean-mapping satellite Saturday.|publisher=SPACE.com|url=https://www.space.com/spacex-sentinel-6-launch-webcast|access-date=21 November 2020}} and Sentinel-6B, which will launch in 2025.{{cite web|date=August 2020|title=Jason-CS (Sentinel 6) Summary|url=https://sealevel.jpl.nasa.gov/missions/jasoncs/|archive-url=https://web.archive.org/web/20170408082707/https://sealevel.jpl.nasa.gov/missions/jasoncs/|url-status=dead|archive-date=2017-04-08|access-date=2 November 2020 |website=sealevel.jpl.nasa.gov|publisher=NASA}} {{PD-notice}} These satellites will measure sea level change from space, which have been measured without interruption since 1992.{{cite web |url=https://www.nesdis.noaa.gov/content/decade-global-sea-level-measurements-jason-2-marks-tenth-year-orbit|title=A Decade of Global Sea Level Measurements: Jason-2 Marks Tenth Year in Orbit |website=nesdis.noaa.gov|publisher=NOAA|date=20 June 2018|access-date=26 May 2021}} {{PD-notice}}{{cite web|last=B.|first=Mark|title=NASA Sentinel 6 Michael Freilich to Launch in November 2020 |url=https://www.sciencetimes.com/articles/27216/20200908/nasa-sentinel-6-michael-freilich-launch-november.htm|publisher=Science Times|date=September 8, 2020}}
Formerly called Sentinel-6A and Jason-CS A (Jason Continuity of Service-A), it was renamed in honor of the former director of NASA Earth Science Division, Michael Freilich, who was instrumental in advancing space-based ocean measurements. It follows the most recent U.S.-European sea level observation satellite, Jason-3, which launched in 2016, and is currently providing high-precision and timely observations of the topography of the global ocean.{{cite web|url=https://www.nasa.gov/press-release/nasa-tv-to-air-sentinel-6-michael-freilich-launch-prelaunch-activities |title=NASA TV to Air Sentinel-6 Michael Freilich Launch, Prelaunch Activities|publisher=NASA|date=13 November 2020|access-date=22 November 2020}} {{PD-notice}}
Context
Since the launch of TOPEX/Poseidon on 10 August 1992, high-precision satellite altimeters have been essential to monitor how the ocean stores and redistributes heat, water, and carbon in the climate system. The two satellites, Sentinel-6 Michael Freilich and Sentinel-6B, will extend this legacy through to at least 2030, which will provide a nearly forty-year record of sea level rise as well as changes in ocean currents.{{cite web|url=https://www.nesdis.noaa.gov/content/upcoming-satellite-mission-will-improve-hurricane-forecasts-and-climate-science-noaa-expert|title=Upcoming Satellite Mission will Improve Hurricane Forecasts and Climate Science, NOAA Expert Says|publisher=NOAA|date=14 August 2020|access-date=26 May 2021}} {{PD-notice}}
Partnership
The Sentinel-6 was developed by European Space Agency (ESA) in the context of the European Copernicus Programme led by the European Commission, the European Organisation for the Exploitation of Meteorological Satellites (EUMETSAT), NASA, and the National Oceanic and Atmospheric Administration (NOAA), with funding support from the European Commission and technical support from France's National Centre for Space Studies (CNES, Centre national d'études spatiales).{{cite web |url=http://www.nasa.gov/feature/jpl/sentinel-6-michael-freilich-satellite-prepared-for-launch|title=Sentinel-6 Michael Freilich Satellite Prepared for Launch|last=Greicius|first=Tony|publisher=NASA|date=19 November 2020|access-date=21 November 2020}} {{PD-notice}}
The Sentinel-6 mission is part of the Copernicus programme initiative, the main objective of the Sentinel-6 mission is to measure sea surface topography with high accuracy and reliability to support ocean forecasting systems, environmental monitoring and climate monitoring.{{cite web|url=https://scitechdaily.com/copernicus-sentinel-6-testing-complete-for-new-international-ocean-satellite/|title=Copernicus Sentinel-6: Testing Complete for New International Ocean Satellite|publisher=SciTechDaily|date=June 15, 2020|access-date=26 May 2021}}
The mission definition is driven by the need for continuity in provision of TOPEX/Poseidon mission and Jason satellite series (Jason-1, OSTM/Jason-2, and Jason-3) with improvements in instrument performance and coverage.{{cite web|url=https://sentinel.esa.int/web/sentinel/missions/sentinel-6/overview|title=Sentinel-6 Overview|publisher=ESA|access-date=2019-10-29}} ESA, NASA, and EUMETSAT will provide mission management and system engineering support. EUMETSAT and NASA will be responsible for long-term archives of altimetry data products. All partners will be involved with the selection of science investigators.
= Responsibilities of partners =
File:USSF_video_of_Sentinel-6_launch_from_VAFB_SLC-4_--_Isolated_Views_(3263265).webm
ESA
- has responsibility for the development of the first satellite and the ground prototype processors, and for procurement of the second satellite on behalf of EUMETSAT and the European Commission
- has responsibility for conducting the Launch and Early Operations Phase (LEOP) of both satellites
- supports flight operations performed by EUMETSAT
EUMETSAT
- has responsibility for ground segment development and coordination at system level, including for operations preparation
- has responsibility for conducting operations of the two satellites after LEOP performed by ESA
- has responsibility for conducting operations of the European part of the ground segment, including processing of altimeter data and delivery of product services to European users
NASA
- has responsibility for the development and delivery of the U.S. payload instruments, the microwave radiometer and the GNSS radio occultation receiver
- provides launch services for both satellites
- provides ground segment development support and will contribute to operations and data processing on the U.S. side, including processing of GNSS radio occultation data
- with NOAA, shares responsibility for the distribution of products to research and operational users in the U.S.
NOAA
- provides a U.S. ground station for tracking and command of the satellite and data downlinks
- with NASA, shares responsibility for the distribution of products to research and operational users in the U.S.
CNES
Instruments
- POSEIDON4, a radar altimeter, developed by ESA, based on the Sentinel-3 SRAL instrument, but with a design adopted to allow an interleaved mode combining a synthetic-aperture radar High-Resolution (HR) mode and a low resolution (LR) mode based on pulse-limited altimetry
- Advanced Microwave Radiometer (AMR-C) provided by NASA
- Global Navigation Satellite System Precise Orbit Determination (GNSS POD) receiver, developed by ESA and derived from the GNSS Receiver on Sentinel-3
- Doppler Orbitography and Radiopositioning Integrated by Satellite (DORIS Receiver), identical to the one used on Jason-3 and Sentinel-3
- Laser Reflector Array (LRA), used for satellite laser ranging, identical to the one used on Jason-3, provided by NASA
- GNSS Radio Occultation (GNSS-RO) based on a Tri-G receiver, provided by NASA {{cite web|url=https://www.eumetsat.int/sentinel-6|title=Sentinel-6 |date=19 May 2020 |publisher=EUMETSAT|access-date=26 May 2021}}
References
{{Portal|Spaceflight}}
{{Reflist|30em}}
{{Copernicus programme}}
{{European Space Agency}}
{{Orbital launches in 2020}}
Category:Jason satellite series
Category:Earth observation satellites of the European Space Agency