The Benefits of the Ka-Band as Evidenced from the SARAL/AltiKa Altimetric Mission: Quality Assessment and Unique Characteristics of AltiKa Data
Abstract
:1. Introduction
2. Quality Assessment of Water Level through Calibration and Validation
2.1. Water Level Calibration from Open-Ocean, Coastal and Inland Waters In Situ Absolute Calibration Sites
2.1.1. Kavaratti, Altimeters’ Calibration Site
2.1.2. SARAL/AltiKa Absolute Calibration over Corsica during the Nominal and Drifting Phases
2.1.3. Absolute Calibration, Validation of SARAL/AltiKa over the Lake Issykkul
- -
- Wet and dry tropospheric delay using a permanent GPS and weather stations
- -
- The GPS height antenna using a radar installed just below the GPS on the boat: see [16] for details.
- -
- The in situ daily level changes for the correction of the hydrological signal from cycle 1 to cycle 15. 1 July 2014 is when the GPS survey was done and corresponds to cycle 14.
- -
- The GINS [18] software was used for the calculation of the GPS 3D coordinates in PPP (Precise Point Positioning) mode.
- -
- With the ocean retracker, the water level bias, which is averaged along the track 554 and using the first 15 cycles of the satellite is given in Figure 7. The absolute bias obtained is: −52 mm.
- -
- With ice1-OCOG retracker, the water level bias, which is averaged along the track 554 and using the first 15 cycles of the satellite, is given in Figure 8. The absolute bias obtained is: +34 mm.
2.2. Regional Calibration of SARAL/AltiKa Sea Surface Height in Corsica, at Harvest and at Bass Strait
2.3. Global Validation of SARAL/AltiKa Sea Surface Height over Ocean
3. Unique Contributions of Ka-Band Information in AltiKa Data
3.1. Power Spectrum Density Analysis of SSH Signal from SARAL/AltiKa and Jason-2 (1 Hz) over Bay of Bengal
3.2. Complementarity between Ku and Ka Measurements over Ice Sheet Surfaces
3.3. Impact of Rain on SARAL/AltiKa Measurements, a New Opportunity to Observe and Study the Rainfall Climatology
3.4. Relationship between Surface Soil Moisture and Radar Altimetry Backscattering Coefficients
- (i)
- R = 0.80 and 0.79 at Ka-band for SARAL/AltiKa tracks 0001 and 0846 respectively,
- (ii)
- R = 0.58 and 0.54 at Ku-band for Jason-2 tracks 046 and 161 respectively,
- (iii)
- R = 0.64 and 0.65 at C-band for Jason-2 tracks 046 and 161 respectively.
4. Conclusions
Acknowledgments
Author Contributions
Conflicts of Interest
References
- Verron, J.; Sengenes, P.; Lambin, J.; Noubel, J.; Steunou, N.; Guillot, A.; Picot, N.; Coutin-Faye, S.; Sharma, R.; Gairola, R.M.; et al. The SARAL/AltiKa altimetry satellite mission. Mar. Geod. 2015, 38, 2–21. [Google Scholar] [CrossRef]
- Verron, J.; Picot, N. Preface. Mar. Geod. 2015, 38, 1. [Google Scholar] [CrossRef]
- Verron, J.; Bonnefond, P.; Aouf, L.; Birol, F.; Bhowmick, S.A.; Calmant, S.; Carret, A.; Conchy, T.; Crétaux, J.F.; Dibarboure, G.; et al. The benefits of the Ka-band as evidenced from the SARAL/AltiKa altimetric mission: Scientific applications. Remote Sens. 2017. under review. [Google Scholar]
- Church, J.; Clark, P.; Cazenave, A.; Gregory, J.; Jevrejeva, S.; Levermann, A.; Merrifield, M.; Milne, G.; Nerem, R.; Nunn, P.; et al. Climate change 2013: The physical science basis. Contribution of Working Group I to the fifth assessment report of the intergovernmental panel on climate change. In Sea Level Change; Cambridge University Press: Cambridge, UK; New York, NY, USA, 2013; Chapter 13. [Google Scholar]
- Prandi, P.; Philipps, S.; Pignot, V.; Picot, N. SARAL/AltiKa global statistical assessment and cross-calibration with Jason-2. Mar. Geod. 2015, 38, 297–312. [Google Scholar] [CrossRef]
- Ablain, M.; Philipps, S.; Picot, N.; Bronner, E. Jason-2 global statistical assessment and cross-calibration with Jason-1. Mar. Geod. 2010, 33, 162–185. [Google Scholar] [CrossRef]
- Bonnefond, P.; Haines, B.; Watson, C. Coastal altimetry. In In Situ Calibration and Validation: A Link from Coastal to Open—Ocean Altimetry; Springer: Berlin/Heidelberg, Germany, 2011; Chapter 11; pp. 259–296. ISBN 978-3-642-12795-3. [Google Scholar]
- Mertikas, S.P.; Daskalakis, A.; Tziavos, I.N.; Vergos, G.; Fratzis, X.; Tripolitsiotis, A. First calibration results for the SARAL/AltiKa altimetric mission using the gavdos permanent facilities. Mar. Geod. 2015, 38, 249–259. [Google Scholar] [CrossRef]
- Bonnefond, P.; Desai, S.; Haines, B.; Leuliette, E.; Picot, N. Regional and Global CAL/VAL for Assembling a Climate Data Record Summary. In Proceedings of the Ocean Surface Topography Science Team Meeting, Miami, FL, USA, 23–27 October 2017; Available online: https://tinyurl.com/ycu32zeo (accessed on 9 January 2018).
- Babu, K.N.; Shukla, A.K.; Suchandra, A.B.; Kumar, S.V.V.A.; Bonnefond, P.; Testut, L.; Mehra, P.; Laurain, O. Absolute calibration of SARAL/AltiKa in Kavaratti during its initial Calibration-validation phase. Mar. Geod. 2015, 38, 156–170. [Google Scholar] [CrossRef]
- Bonnefond, P.; Exertier, P.; Laurain, O.; Guillot, A.; Picot, N.; Cancet, M.; Lyard, F. SARAL/AltiKa absolute calibration from the multi-mission Corsica facilities. Mar. Geod. 2015, 38, 171–192. [Google Scholar] [CrossRef]
- Bonnefond, P.; Laurain, O.; Exertier, P.; Boy, F.; Guinle, T.; Picot, N.; Labroue, S.; Raynal, M.; Donlon, C.; Féménias, P.; et al. Calibrating SAR SSH of sentinel-3A and CryoSat-2 over the Corsica facilities. Remote Sens. 2018, 10, 92. [Google Scholar] [CrossRef]
- Crétaux, J.F.; Calmant, S.; Romanovski, V.; Shabunin, A.; Lyard, F.; Bergé-Nguyen, M.; Cazenave, A.; Hernandez, F.; Perosanz, F. An absolute calibration site for radar altimeters in the continental domain: Lake Issykkul in Central Asia. J. Geod. 2009, 83, 723–735. [Google Scholar] [CrossRef]
- Crétaux, J.F.; Calmant, S.; Romanovski, V.; Perosanz, F.; Tashbaeva, S.; Bonnefond, P.; Moreira, D.; Shum, C.K.; Nino, F.; Bergé-Nguyen, M.; et al. Absolute Calibration of Jason Radar Altimeters from GPS Kinematic Campaigns over Lake Issykkul. Mar. Geod. 2011, 34, 291–318. [Google Scholar] [CrossRef]
- Crétaux, J.F.; Bergé-Nguyen, M.; Calmant, S.; Romanovski, V.; Meyssignac, B.; Perosanz, F.; Tashbaeva, S.; Arsen, A.; Fund, F.; Martignago, N.; et al. Calibration of Envisat radar altimeter over Lake Issykkul. Adv. Space Res. 2013, 51, 1523–1541. [Google Scholar] [CrossRef]
- Cretaux, J.F.; Bergé-Nguyen, M.; Calmant, S.; Djamangulova, N.; Satylkanov, R.; Lyard, F.; Perosanz, F.; Verron, J.; Samine Montazem, A.; Le Guilcher, G.; et al. Absolute calibration/validation of the altimeters on sentinel-3A and Jason-3 over the lake Issykkul. Remote Sens. 2017. under review. [Google Scholar]
- Arsen, A.; Crétaux, J.F.; del Rio, R.A. Use of SARAL/AltiKa over Mountainous Lakes, Intercomparison with Envisat Mission. Mar. Geod. 2015, 38, 534–548. [Google Scholar] [CrossRef]
- Marty, J.C.; Loyer, S.; Perosanz, F.; Mercier, F.; Bracher, G.; Legresy, B.; Portier, L.; Capdeville, H.; Fund, F.; Lemoine, J.M.; et al. GINS: The CNES/GRGS GNSS scientific software. In Proceedings of the 3rd International Colloquium Scientific and Fundamental Aspects of the Galileo Programme, ESA Proceedings WPP326, Copenhagen, Denmark, 31 August–2 September 2011; Volume 31. [Google Scholar]
- Jan, G.; Ménard, Y.; Faillot, M.; Lyard, F.; Jeansou, E.; Bonnefond, P. Offshore Absolute Calibration of space-borne radar altimeters. Mar. Geod. 2004, 27, 615–629. [Google Scholar] [CrossRef]
- Cancet, M.; Bijac, S.; Chimot, J.; Bonnefond, P.; Jeansou, E.; Laurain, O.; Lyard, F.; Bronner, E.; Féménias, P. Regional in situ validation of satellite altimeters: Calibration and cross-calibration results at the Corsican sites. Adv. Space Res. 2013, 51, 1400–1417. [Google Scholar] [CrossRef]
- Cancet, M.; Lux, M.; Pénard, C. COMAPI: New Regional Tide Atlases and High Frequency Dynamical Atmospheric Correction. In Proceedings of the Ocean Surface Topography Science Team Meeting, Lisbon, Portugal, 18–22 October 2010; Available online: https://tinyurl.com/y98xedyq (accessed on 9 January 2018).
- Carrère, L.; Lyard, F. Modeling the barotropic response of the global ocean to atmospheric wind and pressure forcing—Comparisons with observations. Geophys. Res. Lett. 2003, 30, 1275. [Google Scholar] [CrossRef]
- Lyard, F.; Lefevre, F.; Letellier, T.; Francis, O. Modelling the global ocean tides: Modern insights from FES2004. Ocean Dyn. 2006, 56, 394–415. [Google Scholar] [CrossRef]
- Cancet, M.; Watson, C.; Haines, B.; Bonnefond, P.; Lyard, F.; Laurain, O.; Guinle, T. Regional CALVAL of Jason-2 and SARAL/AltiKa at Three Calibration Sites. In Proceedings of the Ocean Surface Topography Science Team Meeting, Reston, FL, USA, 20–23 October 2015; Available online: https://tinyurl.com/ybm9huug (accessed on 9 January 2018).
- Carrère, L.; Lyard, F.; Cancet, M.; Guillot, A.; Picot, N.; Dupuy, S. FES2014: A New Global Tidal Model. In Proceedings of the Ocean Surface Topography Science Team Meeting, Reston, FL, USA, 20–23 October 2015; Available online: https://tinyurl.com/y9j9p4mf (accessed on 9 January 2018).
- Valladeau, G.; Thibaut, P.; Picard, B.; Poisson, J.C.; Tran, N.; Picot, N.; Guillot, A. Using SARAL/AltiKa to improve Ka-band Altimeter measurements for Coastal Zones, Hydrology and ice: The PEACHI Prototype. Mar. Geod. 2015, 38, 124–142. [Google Scholar] [CrossRef]
- Steunou, N.; Desjonquères, J.D.; Picot, N.; Sengenes, P.; Noubel, J.; Poisson, J.C. AltiKa Altimeter: Instrument description and in flight performance. Mar. Geod. 2015, 38, 22–42. [Google Scholar] [CrossRef]
- Tournadre, J.; Poisson, J.C.; Steunou, N.; Picard, B. Validation of AltiKa matching pursuit rain flag. Mar. Geod. 2015, 38, 107–123. [Google Scholar] [CrossRef]
- Meyssignac, B.; Cazenave, A. Sea level: A review of present-day and recent-past changes and variability. J. Geodyn. 2012, 58, 96–109. [Google Scholar] [CrossRef]
- Picard, B.; Frery, M.L.; Obligis, E.; Eymard, L.; Steunou, N.; Picot, N. SARAL/AltiKa wet tropospheric correction: In-flight Calibration, retrieval strategies and performances. Mar. Geod. 2015, 38, 277–296. [Google Scholar] [CrossRef]
- Zaron, E.D.; de Carvalho, R. Identification and reduction of retracker-related noise in altimeter-derived sea surface height measurements. J. Atmos. Ocean. Technol. 2016, 33, 201–210. [Google Scholar] [CrossRef]
- Dibarboure, G.; Boy, F.; Desjonqueres, J.D.; Labroue, S.; Lasne, Y.; Picot, N.; Poisson, J.C.; Thibaut, P. Investigating short-wavelength correlated errors on low-resolution mode altimetry. J. Atmos. Ocean. Technol. 2014, 31, 1337–1362. [Google Scholar] [CrossRef]
- Rémy, F.; Flament, T.; Michel, A.; Blumstein, D. Envisat and SARAL/AltiKa observations of the Antarctic Ice Sheet: A comparison between the Ku-band and Ka-band. Mar. Geod. 2015, 38, 510–521. [Google Scholar] [CrossRef]
- Legrésy, B.; Rémy, F. Using the temporal variability of the radar altimetric observations to map surface properties of the Antarctic ice sheet. J. Glaciol. 1998, 44, 197–206. [Google Scholar] [CrossRef]
- Wriedt, T. Mie Theory: A Review. In The Mie Theory: Basics and Applications; Hergert, W., Wriedt, T., Eds.; Springer: Berlin/Heidelberg, Germany, 2012; pp. 53–71. [Google Scholar]
- Vincent, P.; Steunou, N.; Caubet, E.; Phalippou, L.; Rey, L.; Thouvenot, E.; Verron, J. AltiKa: A Ka-band Altimetry Payload and System for Operational Altimetry during the GMES period. Sensors 2006, 6, 208–234. [Google Scholar] [CrossRef]
- Aublanc, J.; Thibaut, P.; Lacrouts, C.; Boy, F.; Guillot, A.; Picot, N.; Rémy, F.; Blumstein, D. Altimetry Mission Performances over the Polar Ice Sheets: Cryosat-2, AltiKa and Sentinel-3A. In Proceedings of the Ocean Surface Topography Science Team Meeting, Miami, FL, USA, 23–27 October 2017; Available online: https://tinyurl.com/y7e7bckx (accessed on 9 January 2018).
- Quartly, G.; Guymer, T.; Srokosz, A. The effects of rain on Topex radar altimeter data. J. Atmos. Ocean. Technol. 1996, 13, 1209–1229. [Google Scholar] [CrossRef]
- Tournadre, J.; Morland, J.C. The effects of rain on TOPEX/Poseidon altimeter data. IEEE Trans. Geosci. Remote Sens. 1997, 35, 1117–1135. [Google Scholar] [CrossRef]
- Tournadre, J.; Lambin-Artru, J.; Steunou, N. Cloud and rain effects on AltiKa/SARAL Ka-band radar altimeter—Part I: Modeling and mean annual data availability. IEEE Trans. Geosci. Remote Sens. 2009, 47, 1806–1817. [Google Scholar] [CrossRef]
- Tournadre, J.; Lambin-Artru, J.; Steunou, N. Cloud and rain effects on AltiKa/SARAL Ka-band radar altimeter—Part II: Definition of a rain/cloud flag. IEEE Trans. Geosci. Remote Sens. 2009, 47, 1818–1826. [Google Scholar] [CrossRef]
- Prandi, P.; Debout, V.; Ablain, M.; Labroue, S. SARAL/Altika Validation and Cross Calibration Activities: Annual Report 2016; Technical Report; CLS: Ramonville Saint-Agne, France, 2016. [Google Scholar]
- Thibaut, P.; Piras, F.; Poisson, J.C.; Moreau, T.; Aublanc, J.; Amarouche, L.; Picot, N. Convergent Solutions for Retracking Conventional and Delay Doppler Altimeter Echoes. In Proceedings of the Ocean Surface Topography Science Team Meeting, Miami, FL, USA, 23–27 October 2017; Available online: https://tinyurl.com/ybppndx6 (accessed on 9 January 2018).
- Tournadre, J. Validation of Jason and envisat altimeter dual frequency rain flags. Mar. Geod. 2004, 27, 153–169. [Google Scholar] [CrossRef]
- Tran, N.; Obligis, E.; Ferreira, F. Comparison of two Jason-1 altimeter precipitation detection algorithms with rain estimates from the TRMM Microwave Imager. J. Atmos. Ocean. Technol. 2005, 22, 782–794. [Google Scholar] [CrossRef]
- Tran, N.; Tournadre, J.; Femenias, P. Validation of envisat rain detection and rain rate estimates by comparing with TRMM data. IEEE Geosci. Remote Sens. Lett. 2008, 5, 658–662. [Google Scholar] [CrossRef]
- Adler, R.F.; Huffman, G.J.; Chang, A.; Ferraro, R.; Xie, P.P.; Janowiak, J.; Rudolf, B.; Schneider, U.; Curtis, S.; Bolvin, D.; et al. The Version-2 Global Precipitation Climatology Project (GPCP) monthly precipitation analysis (1979–Present). J. Hydrometeorol. 2003, 4, 1147–1167. [Google Scholar] [CrossRef]
- Poisson, J.; Thibaut, P.; Hoang, D.; Boy, F.; Guillot, A.; Picot, N. Wavelet analysis of AltiKa measurements. In Proceedings of the Ocean Surface Topography Science Team, Constance, Germany, 28–31 October 2014. [Google Scholar]
- Zech, W.; Senesi, N.; Guggenberger, G.; Kaiser, K.; Lehmann, J.; Miano, T.; Miltner, A.; Schroth, G. Factors controlling humification and mineralization of soil organic matter in the tropics. Geoderma 1997, 79, 117–161. [Google Scholar] [CrossRef]
- Hiernaux, P.; Mougin, E.; Diarra, L.; Soumaguel, N.; Lavenu, F.; Tracol, Y.; Diawara, M.; Jarlan, L. Rangeland response to rainfall and grazing pressure over two decades: Herbaceous growth pattern, production and species composition in the Gourma, Mali. J. Hydrol. 2009, 375, 114–127. [Google Scholar] [CrossRef]
- Brümmer, C.; Falk, U.; Papen, H.; Szarzynski, J.; Wassmann, R.; Brüggemann, N. Diurnal, seasonal, and interannual variation in carbon dioxide and energy exchange in shrub savanna in Burkina Faso (West Africa). J. Geophys. Res. Biogeosci. 2008, 113. [Google Scholar] [CrossRef]
- Taylor, C.M.; Harris, P.P.; Parker, D.J. Impact of soil moisture on the development of a Sahelian mesoscale convective system: A case-study from the AMMA Special Observing Period. Q. J. R. Meteorol. Soc. 2010, 136, 456–470. [Google Scholar] [CrossRef]
- Fatras, C.; Frappart, F.; Mougin, E.; Grippa, M.; Hiernaux, P. Estimating surface soil moisture over Sahel using ENVISAT radar altimetry. Remote Sens. Environ. 2012, 123, 496–507. [Google Scholar] [CrossRef]
- Fatras, C.; Frappart, F.; Mougin, E.; Frison, P.L.; Faye, G.; Borderies, P.; Jarlan, L. Spaceborne altimetry and scatterometry backscattering signatures at C- and Ku-bands over West Africa. Remote Sens. Environ. 2015, 159, 117–133. [Google Scholar] [CrossRef]
- Baup, F.; Mougin, E.; de Rosnay, P.; Hiernaux, P.; Frappart, F.; Frison, P.L.; Zribi, M.; Viarre, J. Mapping surface soil moisture over the Gourma mesoscale site (Mali) by using ENVISAT ASAR data. Hydrol. Earth Syst. Sci. 2011, 15, 603–616. [Google Scholar] [CrossRef] [Green Version]
- Gruhier, C.; de Rosnay, P.; Hasenauer, S.; Holmes, T.; de Jeu, R.; Kerr, Y.; Mougin, E.; Njoku, E.; Timouk, F.; Wagner, W.; et al. Soil moisture active and passive microwave products: Intercomparison and evaluation over a Sahelian site. Hydrol. Earth Syst. Sci. 2010, 14, 141–156. [Google Scholar] [CrossRef] [Green Version]
- Frappart, F.; Fatras, C.; Mougin, E.; Marieu, V.; Diepkilé, A.; Blarel, F.; Borderies, P. Radar altimetry backscattering signatures at Ka, Ku, C, and S bands over West Africa. Phys. Chem. Earth Parts A/B/C 2015, 83, 96–110. [Google Scholar] [CrossRef]
- Kerr, Y.H.; Waldteufel, P.; Richaume, P.; Wigneron, J.P.; Ferrazzoli, P.; Mahmoodi, A.; Al Bitar, A.; Cabot, F.; Gruhier, C.; Juglea, S.E.; et al. The SMOS soil moisture retrieval algorithm. IEEE Trans. Geosci. Remote Sens. 2012, 50, 1384–1403. [Google Scholar] [CrossRef]
SARAL/Altika Regional Bias Estimates (mm) | Mean (mm) | Std (mm) | Nb of Cycles | Nb of Xover Points | Std over the Xover Points (mm) |
---|---|---|---|---|---|
Senetosa (cycle 1–35) | −84 | 32 | 34 | 7 | 5 |
Ajaccio (cycle 1–35) | −37 | 36 | 33 | 6 | 13 |
Harvest (cycle 1–35) | −19 | 64 | 30 | 4 | 12 |
Bass Strait (cycle 1–25) | −22 | 56 | 24 | 5 | 13 |
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Bonnefond, P.; Verron, J.; Aublanc, J.; Babu, K.N.; Bergé-Nguyen, M.; Cancet, M.; Chaudhary, A.; Crétaux, J.-F.; Frappart, F.; Haines, B.J.; et al. The Benefits of the Ka-Band as Evidenced from the SARAL/AltiKa Altimetric Mission: Quality Assessment and Unique Characteristics of AltiKa Data. Remote Sens. 2018, 10, 83. https://doi.org/10.3390/rs10010083
Bonnefond P, Verron J, Aublanc J, Babu KN, Bergé-Nguyen M, Cancet M, Chaudhary A, Crétaux J-F, Frappart F, Haines BJ, et al. The Benefits of the Ka-Band as Evidenced from the SARAL/AltiKa Altimetric Mission: Quality Assessment and Unique Characteristics of AltiKa Data. Remote Sensing. 2018; 10(1):83. https://doi.org/10.3390/rs10010083
Chicago/Turabian StyleBonnefond, Pascal, Jacques Verron, Jérémie Aublanc, K. N. Babu, Muriel Bergé-Nguyen, Mathilde Cancet, Aditya Chaudhary, Jean-François Crétaux, Frédéric Frappart, Bruce J. Haines, and et al. 2018. "The Benefits of the Ka-Band as Evidenced from the SARAL/AltiKa Altimetric Mission: Quality Assessment and Unique Characteristics of AltiKa Data" Remote Sensing 10, no. 1: 83. https://doi.org/10.3390/rs10010083